| 1 | Rexi Margaret | 2024 | Diploma dalam Formulasi Perawatan Kulit | Institute of Cosmetic Science / NIFDTB Academy | 1 |
| 2 | Rexi Margaret | 2024 | Diploma Lanjutan dalam Formulasi Kosmetik Warna Alami | Institute of Cosmetic Science / NIFDTB Academy | 1 |
| 3 | Rexi Margaret | 2024 | Diploma Paling Lanjutan dalam Ilmu Kosmetik | Institute of Cosmetic Science / NIFDTB Academy | 1 |
| 4 | Rexi Margaret | 2024 | Program Penguasaan Ilmu Kosmetik: Jalur Anda Memulai Merek Kosmetik yang Sukses | Institute of Cosmetic Science (Saluran YouTube) | 1 |
| 5 | Rexi Margaret | 2024 | Panduan Pengembangan Bisnis dan Pembangunan Merek untuk Pengusaha Kosmetik | Institute of Cosmetic Science | 1 |
| 1 | Nancy Etkov | 1999 | Survival of the Prettiest: The Science of Beauty | Anchor Books/Doubleday | 2 |
| 3 | Judith Langlois | 1980-an | Preferential looking study of infants | University of Texas | 2 |
| 1 | ACC PO/PG Panel | 2001 | Propylene glycol information update: propylene glycol in cats | American Chemistry Council | 3 |
| 2 | Al-Jasser M, Mebuke N, deGannes GC | 2011 | Propylene glycol: an often unrecognized cause of allergic contact dermatitis in patients using topical corticosteroids | Skin Therapy Lett, 16, 5–7 | 3 |
| 3 | Arbour R, Esparis B | 2000 | Osmolar gap metabolic acidosis in a 60-year-old man treated for hypoxemic respiratory failure | Chest, 118, 545–6 | 3 |
| 4 | ATSDR | 1997 | Toxicological profile for propylene glycol | Agency for Toxic Substances and Disease Registry | 3 |
| 5 | Aye M, Di Giorgio C, De Mo M, et al. | 2010 | Assessment of the genotoxicity of three cryoprotectants used for human oocyte vitrification: dimethyl sulfoxide, ethylene glycol and propylene glycol | Food Chem Toxicol, 48, 1905–12 | 3 |
| 6 | Basketter DA, Gerberick GF, Kimber I | 1998 | Strategies for identifying false positive responses in predictive skin sensitization tests | Food Chem Toxicol, 36, 327–33 | 3 |
| 7 | Bates HK, Price CJ, Marr MC, et al. | 1992 | Final report on the developmental toxicity of dipropylene glycol (CAS-No. 25265-71-8) in New Zealand white rabbits | National Toxicology Program | 3 |
| 8 | Berthelot-Ricou A, Perrin J, di Giorgio C, et al. | 2011 | Assessment of 1,2-propanediol (PrOH) genotoxicity on mouse oocytes by comet assay | Fertility Sterility, 96, 1002–7 | 3 |
| 9 | Braun HA, Cartland GF | 1936 | The toxicity of propylene glycol | J Am Pharm Assoc, 25, 746–9 | 3 |
| 10 | Choi H, Schmidbauer N, Sundell J, et al. | 2010 | Common household chemicals and the allergy risks in pre-school age children | PLoS One, 5, e13423 | 3 |
| 11 | Claus MA, Jandrey KE, Poppenga RH | 2011 | Propylene glycol intoxication in a dog | J Vet Emerg Crit Care, 21, 679–83 | 3 |
| 12 | CIR | 1994 | Final report on the safety assessment of propylene glycol and the polypropylene glycols | J Am Coll Toxicol, 13, 437–91 | 3 |
| 13 | Doenicke A, Roizen MF, Hoeneke R, et al. | 1997 | Hemolysis after etomidate: comparison of propylene glycol and lipid formulations | Brit J Anaesthesia, 79, 386–8 | 3 |
| 14 | Fowles JR, Banton MI, Pottenger LH | 2013 | A toxicological review of the propylene glycols | Critical Reviews in Toxicology, 43(4): 363–390 | 3 |
| 15 | Gaunt IF, Carpanini FMB, Grasso P, Lansdown ABG | 1972 | Long-term toxicity of propylene glycol in rats | Food Cosmet Toxicol, 10, 151–62 | 3 |
| 16 | Werley MS, McDonald P, Lilly P, et al. | 2011 | Non-clinical safety and pharmacokinetic evaluations of propylene glycol aerosol in Sprague–Dawley rats and Beagle dogs | Toxicology, 287, 76–90 | 3 |
| 1 | Dragicevic, N.; Maibach, H.I. | 2024 | Liposomes and Other Nanocarriers for the Treatment of Acne Vulgaris: Improved Therapeutic Efficacy and Skin Tolerability | Pharmaceutics | 4 |
| 2 | Gebauer, K. | 2017 | Acne in Adolescent | Aust. Fam. Physician | 4 |
| 3 | Reynolds, R.V.; dkk. | 2023 | Guidelines of Care for the Management of Acne Vulgaris | J. Am. Dermatol. | 4 |
| 4 | Nast, A.; dkk. | 2016 | Methods Report on the Development of the European Evidence-Based (S3) Guideline for the Treatment of Acne–Update 2016 | J. Eur. Acad. Dermatol. Venereol. | 4 |
| 5 | Valente Duarte de Sousa, I.C. | 2021 | An Overview of Sarecycline for the Treatment of Moderate-to-Severe Acne Vulgaris | Expert Opin. Pharmacother. | 4 |
| 6 | Vyas, A.; Sonker, A.K.; Gidwani, B. | 2014 | Carrier-Based Drug Delivery System for Treatment of Acne | Sci. World J. | 4 |
| 7 | Wilcock, J.; dkk. | 2021 | New NICE Guidance on Acne Vulgaris: Implications for First-Line Management in Primary Care | Br. J. Gen. Pract. | 4 |
| 8 | Latter, G.; dkk. | 2019 | Targeted Topical Delivery of Retinoids in the Management of Acne Vulgaris: Current Formulations and Novel Delivery Systems | Pharmaceutics | 4 |
| 9 | Baldwin, H.; dkk. | 2021 | 50 Years of Topical Retinoids for Acne: Evolution of Treatment | Am. J. Clin. Dermatol. | 4 |
| 10 | Dessinioti, C.; Katsambas, A. | 2017 | Propionibacterium Acnes and Antimicrobial Resistance in Acne | Clin. Dermatol. | 4 |
| 1 | Hardan Gautama, dkk. | 2019 | Internet Marketing for Your Business | Elex Media Komputindo | 5 |
| 2 | Dwi Aris Nurohman | 2021 | Konten Kreator Cara Kreatif Menghasilkan Uang dengan Menjadi Blogger, Youtuber, atau Tiktoker | Elmarkazi | 5 |
| 3 | James Timothy | 2010 | Membangun Bisnis Online | Elex Media Komputindo | 5 |
| 4 | S. G. Abate, A. T. Wassie, & R. K. Bachheti | 2025 | Impact of extraction techniques on the phytochemical profile and antibacterial activity of Syzygium aromaticum: Bio-guided fractionation reveals a potent n-butanol fraction and essential oil efficacy | Natural Product Communications | 6 |
| 5 | T. Brendler, J. A. Brinckmann, M. Daoust, H. He, G. Masé, K. Steffan, & M. Williams | 2022 | Suitability of botanical extracts as components of complex mixtures used in herbal tea infusions—Challenges and opportunities | Frontiers in Pharmacology | 6 |
| 6 | F.-L. Hsu, Y.-J. Chen, C.-K. Hsu, & L.-J. Wang | 2024 | Characterization of seven species of Camellia oil: Oil content, volatile compounds, and oxidative stability | Foods | 6 |
| 7 | E. Rodríguez-Rodríguez, Á. Morón-Ortiz, P. Mapelli-Brahm, C. U. Mussagy, F. O. Farias, B. Olmedilla-Alonso, & A. J. Meléndez-Martínez | 2025 | Ultrasound-assisted extraction of Spirulina platensis carotenoids: Effect of drying methods and performance of the emerging biosolvents 2-methyltetrahydrofuran and ethyl lactate | Molecules | 6 |
| 1 | Apristasari, O., Yuliyani, S. H., Rahmanto, D., & Srifiana, Y. | 2018 | FAMIKU (Face Mist-Ku) yang memanfaatkan ekstrak kubis ungu dan bengkuang sebagai antioksidan dan pelembab wajah | Fakultas Farmasi Dan Sains Universitas Muhammadiyah Prof DR Hamka, 5(2), 35-40 | 7 |
| 2 | Azzahra, F., & Hayati, M. | 2019 | Uji Aktivitas Ekstrak Daun Pegagan (Centella asiatica (L). Urb) Terhadap Pertumbuhan Streptococcus mutans | B-Dent: Jurnal Kedokteran Gigi Universitas Baiturrahmah, 5(1), 9–19 | 7 |
| 3 | Butarbutar, M. E. T., & Chaerunisaa, A. Y. | 2020 | Peran Pelembab dalam Mengatasi Kondisi Kulit Kering | Majalah Farmasetika, 6(1), 56–69 | 7 |
| 4 | Eka, D., Sari, K., Widowati, T., Aris, D., & Atika, N. | 2023 | Kelayakan Daun Pegagan (Centella Asiatica (L.) Urban) Sebagai Bahan Dasar Sabun Untuk Kulit Kering | Beauty and Beauty Health Education Journal, 12(2), 78–85 | 7 |
| 5 | Hasana, A. R., & Wibowo | 2023 | Formulation Face Mist With Gotu Kola (Centella asiatica) Extract As Antioxidant and Moisturizing For Elderly Skin | Proceeding of International Conference of Kerta Cendekia, 2(1), 124–130 | 7 |
| 6 | Putranti, I. O., & Sistina, Y. | 2023 | Tinjauan Pustaka: Fotobiologi Ultraviolet Pada Jaringan Kulit | Mandala Of Health, 16(1), 33 | 7 |
| 7 | Reisli, T. S. | 2023 | Potensi Daun Pegagan (Centella asiatica) Sebagai Proses Penyembuhan Mukositis Oral | Repository Universitas Islam Sultan Agung | 7 |
| 8 | Thaitami, S. H., Silvia, F., Rias, T., & Padang, U. N. | 2024 | Masker Tepung Jagung sebagai Perawatan Kulit Wajah Kering | Ensiklopedia of Journal, 8, 27451–27460 | 7 |
| 9 | Wandono, E. H., Kusdiyantini, E., & Hadiyanto, H. | 2020 | Efektivitas Limbah Kulit Kering Nanas Madu (Ananas Comosus l.Merr) untuk Pembuatan Bioetanol dengan Proses Fermentasi dan Distilasi | Jurnal Energi Baru Dan Terbarukan, 1(2), 45–53 | 7 |
| 1 | E. Amatya dkk. | 2020 | Frequency of different types of facial melanoses referring to the department of dermatology and venereology, nepal medical college and teaching hospital in 2019, and assessment of their effect on health-related quality of life | BMC Dermatology | 8 |
| 2 | N. Pazyar, R. Yaghoobi, M. Zeynalie dkk. | 2019 | Comparison of the efficacy of intradermal injected tranexamic acid vs hydroquinone cream in the treatment of melasma | Clinical, Cosmetic and Investigational Dermatology | 8 |
| 3 | N. Pazyar, S.N. Molavi, P. Hosseinpour dkk. | 2022 | Efficacy of intradermal injection of tranexamic acid and ascorbic acid versus tranexamic acid and placebo in the treatment of melasma: A split-face comparative trial | Health Science Reports | 8 |
| 4 | U. Badilli dan O. Inal | 2025 | Current Approaches in Cosmeceuticals: Peptides, Biotics and Marine Biopolymers | Polymers | 9 |
| 5 | V. Gupta, S. Mohapatra dkk. | 2022 | Nanotechnology in cosmetics and cosmeceuticals—A review of latest advancements | Gels | 9 |
| 6 | F. Errante, P. Ledwon dkk. | 2020 | Cosmeceutical peptides in the framework of sustainable wellness Economy | Front. Chem. | 9 |
| 7 | T.N. Lima dan C.A.P. Moraes | 2018 | Bioactive peptides: Applications and relevance for cosmeceuticals | Cosmetics | 9 |
| 8 | V. Apostolopoulos, J. Bojarska dkk. | 2021 | A global review on short peptides: Frontiers and perspectives | Molecules | 9 |
| 9 | L.T.N. Ngoc, J.-Y. Moon dkk. | 2023 | Insights into bioactive peptides in cosmetics | Cosmetics | 9 |
| 10 | H.H. Hadmed dan R.F. Castillo | 2016 | Cosmeceuticals: Peptides, proteins, and growth factors | J. Cosmet. Dermatol. | 9 |
| 1 | Bukhari SNA, Roswandi NL, Waqas M, Habib H, Hussain F, Khan S, Sohail M, Ramli NA, Thu HE, Hussain Z. | 2018 | Hyaluronic acid, a promising skin rejuvenating biomedicine: a review of recent updates and pre-clinical and clinical investigations on cosmetic and nutricosmetic effects. | Int J Biol Macromol. | 10 |
| 2 | Essendoubi M, Gobinet C, Reynaud R, Angiboust JF, Manfait M, Piot O. | 2016 | Human skin penetration of hyaluronic acid of different molecular weights as probed by Raman spectroscopy. | Skin Res Technol. | 10 |
| 3 | Trookman NS, Rizer RL, Ford R, Ho E, Gotz V. | 2009 | Immediate and longer-term clinical benefits of a topical treatment for facial lines and wrinkles. | J Cin Aesthet Dermatol. | 10 |
| 4 | Stern R, Maibach HI. | 2008 | Hyaluronan in skin: aspects of aging and its pharmacologic modulation. | Clin Dermatol. | 10 |
| 5 | Jegasothy SM, Zabolotniaia V, Bielfedt A. | 2014 | Efficacy of a new topical nano-hyaluroinc acid in humans. | J Clin Aesthet Dermatolog. | 10 |
| 6 | Pavicic T, Gauglitz GG, Lersch P, Schwach-Abdel-laoui K, Malle B, Korting HC, Farwick M. | 2011 | Efficacy of cream-based novel formulations of hyaluronic acid of different molecular weights in anti-wrinkle treatment. | J Drugs Dermatol. | 10 |
| 7 | Lubart R, Yariv I, Fixler D, Lipovsky A. | 2019 | Topical hyaluronic acid facial cream with new micronized molecule technology effectively penetrates and improves facial skin quality: results from in-vitro, ex-vivo, and in-vivo (open-label) studies. | J Clin Aesthet Dermatol. | 10 |
| 8 | Papakonstantinou E, Roth M, Karakiulakis G. | 2012 | Hya-luronic acid, a key molecule in skin aging. | Dermato-Endocrinol. | 10 |
| 9 | Oe M, Sakai S, Yoshida H, Okado N, Kaneda H, Masuda Y, Urushibata O. | 2017 | Oral hyaluronan relieves wrinkles: a double-blinded, placebo-controlled study over 12-week period. | Clin Cosmet Investig Dermatol. | 10 |
| 10 | Nobel PW, Liang J, Jiang D. | 2011 | Hyaluronan as an immune regulator in human disease. | Physiol Rev. | 10 |
| 11 | Kim DS, et al. | 2020 | Synergistic effects of using novel home-use-660- and 850 nm light emitting diode mask in combination with hyaluronic acid ampoule on photoaged Asian skin. | J Cosmet Der-matol. | 10 |
| 12 | Longas MO, Russell CS, He HY. | 1987 | Evidence for structural changes in dermatan sulfate and hyaluronic acid with aging. | Carbohydr Res. | 10 |
| 13 | Dadzie OE, Petit AJ. | 2009 | Skin bleaching: highlighting the misuse of cutaneous depigmenting agents. | Eur Acad Dermatol Venereol. | 11 |
| 14 | McKelvey W, Jeffery N, Clark N, Kass D, Parsons PJ. | 2011 | Population-based inorganic mercury biomonitoring and the identification of skin care products as a source of exposure in New York City. | Environ Health Perspect. | 11 |
| 15 | Engler DE. | 2005 | Mercury ‘bleaching’ creams. | J Am Acad Dermatol. | 11 |
| 16 | Sun GF, Hu WT, Yuan ZH, Zhang BA, Lu H. | 2017 | Characteristics of mercury intoxication induced by skin-lightening products. | Chin Med J (Engl). | 11 |
| 17 | Peltzer K, Pengpid S, James C. | 2016 | The globalization of whitening: prevalence of skin lighteners (or bleachers) use and its social correlates among university students in 25 countries. | Int J Dermatol. | 11 |
| 18 | Shroff H, Diedrichs PC, Craddock N. | 2018 | Skin color, culture capital, and beauty products: an investigation of the use of skin fairness products in Mumbai, India. | Front Public Health. | 11 |
| 19 | Peregrino CP, Moreno MV, Miranda SV, Rubio AD, Leal LO. | 2011 | Mercury levels in locally manufactured Mexican skin-lightening creams. | Int J Environ Res Public Health. | 11 |
| 20 | Jose A, Ray JG. | 2018 | Toxic content of certain commercially available fairness creams in Indian market. | Cogent Med. | 11 |
| 21 | Ladizinski B, Mistry N, Kundu RV. | 2011 | Widespread use of toxic skin lightening compounds: medical and psychosocial aspects. | Dermatol Clin. | 11 |
| 22 | Al-Saleh I, Al-Doush I. | 1997 | Mercury content in skin-lightening creams and potential hazards to the health of Saudi women. | J Toxicol Environ Health. | 11 |
| 23 | Tang HL, Chu KH, Mak YF, Lee W, Cheuk A, Yim KF, et al. | 2006 | Minimal change disease following exposure to mercury-containing skin lightening cream. | Hong Kong Med J. | 11 |
| 24 | Barr RD, Rees PH, Cordy PE, Kungu A, Woodger BA, Cameron HM. | 1972 | Nephrotic syndrome in adult Africans in Nairobi. | Br Med J. | 11 |
| 1 | Li SJ, Zhang SH, Chen HP, et al. | 2010 | Mercury-induced membranous nephropathy: clinical and pathological features | Clin J Am Soc Nephrol | 12 |
| 2 | Gaioli GM, González DE, Areny G, et al. | 2020 | Heavy metals in the enviroment: Guillain-Barré like syndrome | Arch Argent Pediatr | 12 |
| 3 | Miller S, Pallan S, Gangji AS, et al. | 2013 | Mercury associated nephrotic syndrome: a case report and systematic review of the literature | Am J Kidney Dis | 12 |
| 4 | Chan TYK, Chan APL and Tang HL. | 2020 | Nephrotic syndrome caused by exposures to skin-lightening cosmetic products containing inorganic mercury | Clin Toxicol | 12 |
| 5 | Park JD and Zheng W. | 2012 | Human exposure and health effects of inorganic and elemental mercury | J Prev Med Public Health | 12 |
| 6 | Pigatto PD, Scaioli V and Guzzi G. | 2019 | Guillain-Barré syndrome after exposure to mercury | J Child Neurol | 12 |
| 7 | Farina M and Aschner M. | 2019 | Glutathione antioxidant system and methylmercury-induced neurotoxicity: an intriguing interplay | Biochim Biophys Acta Gen Subj | 12 |
| 8 | Evans S, Smith J and Caron E. | 2018 | A case of mercury toxicity complicated by acute inflammatory demyelinating polyneuropathy | J Child Neurol | 12 |
| 9 | Swaiman KF and Flagler DG. | 1971 | Mercury poisoning with central and peripheral nervous system involvement treated with penicillamine | Pediatrics | 12 |
| 10 | Ross AT. | 1964 | Mercuric polyneuropathy with albumino-cytologic dissociation and eosinophilia | JAMA | 12 |
| 11 | Pérez CA, Shah EG and Butler IJ. | 2020 | Mercury-induced autoimmunity: report of two adolescent siblings with Morvan syndrome “plus” and review of the literature | J Neuroimmunology | 12 |
| 12 | Singer R, Valciukas JA and Rosenman KD. | 1987 | Peripheral neurotoxicity in workers exposed to inorganic mercury compounds | Arch Environ Health | 12 |
| 13 | Haggqvist B and Hultman P. | 2003 | Effects of deviating the Th2-response in murine mercury-induced autoimmunity towards a Th1-response | Clin Exp Immunol | 12 |
| 14 | Icard P, Pelletier L, Vial MC, et al. | 1993 | Evidence for a role of antilaminin-producing B cell clones that escape tolerance in the pathogenesis of HgCl2-induced membranous glomerulopathy | Nephrol Dial Transplant | 12 |
| 15 | Collier K, Matalonis S, Owen AJ. | 1999 | Evaluation of permeability enhancement by microemulsion in a caco-2 cell system | Proc Int Symp Control Release Bioact Mater | 13 |
| 16 | Alany RG, Rades T, Agatonovic-Kustrin S, Dvies NM, Tucker IG. | 2000 | Effects of alcohols and diols on the phase behaviour of quaternary systems | Int J Pharm | 13 |
| 17 | Trotta M, Pattarino F, Grosa G. | 1998 | Formation of lecithin-based microemulsions containing n-alkanol phosphocholines | Int J Pharm | 13 |
| 18 | Marti-Mestres G, Nielloud F. | 2002 | Emulsions in health care applications— an overview | J Dispers Sci Technol | 13 |
| 19 | Osborne DW, Ward AJ, O’Neill KJ. | 1991 | Microemulsions as topical drug delivery vehicles: in-vitro transdermal studies of a model hydrophilic drug | J Pharm Pharmacol Comm | 13 |
| 20 | Jachowicz J, Berthiaume MD. | 1993 | Microemulsions vs. macroemulsions in hair care products | Cosmet Toiletries | 13 |
| 21 | Orth DS, Widjaja J, Ly L, Cao N, Shapiro WB. | 1998 | Stability and skin persistence of topical products: evaluating the effect of a hydroalcoholic hydroquinone vehicle | Cosmet Toiletries | 13 |
| 22 | Bashir SJ, Dreher F, Chew AL, Zhai H, Levin C, Stern R, et al. | 2005 | Cutaneous bioassay of salicylic acid as a keratolytic | Int J Pharm | 13 |
| 23 | Leslie KS, Dootson G, Sterling JC. | 2005 | Topical salicylic acid gel as a treatment for molluscum contagiosum in Children | J Derm Treat | 13 |
| 24 | Park WB, Kim SH, Cho JH, Bang JH, Kim HB, Kim NJ, et al. | 2007 | Effect of salicylic acid on invasion of human vascular endothelial cells by Staphylococcus aureus | FEMS Immunol Med Microbiol | 13 |
| 25 | Kupferwasser LI, Yeaman MR, Nast CC, Kupferwasser D, Xiong YQ, Palma M, et al. | 2003 | Salicylic acid attenuates virulence in endovascular infections by targeting global regulatory pathways in Staphylococcus aureus | J Clin Invest | 13 |
| 26 | Draelos ZD. | 2005 | An evaluation of topical 3% salicylic acid and 1% hydrocortisone in the maintenance of scalp pruritus | J Cosmet Dermatol | 13 |
| 27 | Lee HS, Kim IH. | 2003 | Salicylic acid peels for the treatment of acne vulgaris in Asian patients | Dermatol Surg | 13 |
| 28 | Pearl E, Grimes MD. | 1999 | The safety and efficacy of salicylic acid chemical peels in darker racial-ethnic groups | Dermatol Surg | 13 |
| 29 | Ahn HH, Kim IH. | 2006 | Whitening effect of salicylic acid peels in Asian patients | Dermatol Surg | 13 |
| 30 | Gladstone HB, Nguyen BA, Williams R, Ottomeyer T, Wortzman M, Jeffers M, et al. | 2000 | Efficacy of hydroquinone cream (USP 4%) used alone or in combination with salicylic acid peels in improving photodamage on the neck and upper chest | Dermatol Surg | 13 |
| 31 | Dainichi T, Ueda S, Isoda M, Koga T, Kinukawa N, Nose Y, et al. | 2003 | Chemical peeling with salicylic acid in polyethylene glycol vehicle suppresses skin tumour development in hairless mice | Br J Dermatol | 13 |
| 32 | Klimowicz A, Farfał S, Bielecka-Grzela S. | 2007 | Evaluation of skin penetration of topically applied drugs in humans by cutaneous microdialysis: acyclovir vs. salicylic acid | J Clin Pharm Ther | 13 |
| 33 | Malcolmson C, Lawrence M. | 1995 | Three-component non-ionic oil-in-water microemulsions using polyoxyethylene ether surfactants | Colloids Surf., B Biointerfaces | 13 |
| 34 | Constantinides PP, Scalart JP, Lancaster C, Marcello J, Marks G, Ellens H, et al. | 1994 | Formulation and intestinal absorption enhancement evaluation of water-in-oil microemulsions incorporating medium-chain glycerides | Pharm Res | 13 |
| 35 | Constantinides PP, Welzel G, Ellens H, Smith PL, Sturgis S, Yiv SH, et al. | 1996 | Water-in-oil microemulsions containing medium-chain fatty acids/salts: formulation and intestinal absorption enhancement evaluation | Pharm Res | 13 |
| 36 | Lucero MJ, Vigo J, Leon MJ. | 1994 | A study of shear and compression deformations on hydrophilic gels of tretinoin | Int J Pharm | 13 |
| 37 | Brime B, Moreno MA, Frutos G, Ballesteros MA, Frutos P. | 2002 | Amphotericin B in oil-water lecithin-based microemulsions: formulation and toxicity evaluation | J Pharm Sci | 13 |
| 38 | Kantaria S, Rees GD, Lawrence MJ. | 1999 | Gelatin-stabilized microemulsion-based organogels: rheology and application in iontophoretic transdermal drug delivery | J Control Release | 13 |
| 39 | Baudonnet L, Grossiord J-L, Rodriguez F. | 2004 | Physicochemical characterization and in vitro release of salicylic acid from o/w emulsions prepared with Montanov 68®: effect of formulation parameters | Drug Dev Ind Pharm | 13 |
| 1 | Adianti, S, N., & Ayuningrum, F. | 2023 | Pengaruh Label Halal Terhadap Keputusan Pembelian Produk Kosmetik Wardah | Jurnal Al-Fatih Global Mulia | 14 |
| 2 | Agustina, L., Shoviantari, F., & Yuliati, N. | 2020 | Penyuluhan Kosmetik Yang Aman Dan Notifikasi Kosmetik | Journal of Community Engagement and Employment | 14 |
| 3 | Amanda, & Sitorus, M. V. | 2021 | Penerapan Algoritma K-Means Clustering Untuk Pengelompokan Konsumsi Produk Kosmetik milik PT Cedefindo | Jurnal Ilmiah MIKA AMIK Al Muslim | 14 |
| 4 | Arsita, D. W., & Jannah, Z. | 2023 | Persepsi Mahasiswa Mengenai Produk Kosmetik Halal (Studi Kasus Mahasiswa Fakultas Syariah IAIN Kudus) | SYARIAH: E-Proceeding of Islamic Law | 14 |
| 5 | El-Farobie, F., Muharir, & Setiawan, B. | 2021 | Pengaruh Labelisasi Halal Produk Skincare Terhadap Keputusan Pembeli (Studi Kasus di Klinik Elsha Kota Palembang) | Jurnal Ilmiah Mahasiswa Ekonomi Syariah (JIMESHA) | 14 |
| 6 | Janney, M. S., Subramaniyan, R., Dabas, R., Lal, S., Das, N. M., & Godara, S. K. | 2019 | A Randomized Controlled Study Comparing the Efficacy of Topical 5% Tranexamic Acid Solution versus 3% Hydroquinone Cream in Melasma | Journal of Cutaneous and Aesthetic Surgery (J Cutan Aesthet Surg) | 15 |
| 7 | Juhaščik, M., Kováčik, A., & Huerta-Ángeles, G. | 2022 | Recent Advances of Hyaluronan for Skin Delivery: From Structure to Fabrication Strategies and Applications | Polymers | 16 |
| 8 | Masturoh, I., & Anggita, N. | 2018 | Metodologi Penelitian Kesehatan | Kementerian Kesehatan RI | 14 |
| 9 | Maulina, N., Silmy, N. F., Sugihantoro, H., & Syahrir, A. | 2024 | Pengaruh Tingkat Pengetahuan terhadap Perilaku dalam Menggunakan Produk Kosmetik Berlabel Halal pada Mahasiswa Teknik Arsitektur UIN Malang | Journal of Islamic Pharmacy | 14 |
| 10 | Nugrahaeni, F., Wiyati, T., Wulandari, N., & Utami, M. S. P. | 2023 | The level of knowledge, attitude, and community behavior about halal cosmetics in Makasar District, DKI Jakarta | Jurnal Ilmiah Farmasi (Scientific Journal of Pharmacy) | 14 |
| 11 | Pangaribuan, L. | 2017 | Efek Samping Kosmetik | Jurnal Keluarga Sehat Sejahtera | 14 |
| 12 | Prayoga, T. S., & Suliadi. | 2024 | Korelasi Rank-Spearman pada Hubungan Beberapa Variabel Produk Domestik Regional Bruto | Jurnal Riset Statistika | 14 |
| 13 | Rahayu, H. W., & Fathoni, S. | 2023 | Kesiapan Badan Penyelenggara Jaminan Produk Halal Terhadap Penerapan Sertifikasi Halal di Kota Samarinda | Ghaly Journal of Islamic Economic Law | 14 |
| 14 | Rahayu, T. S. M., & Handayani, R. | 2023 | Pengaruh Label Halal, Promosi Di Media Sosial, Dan Word of Mouth (Wom) Terhadap Keputusan Pembelian Ms Glow Di Cilacap | Derivatif: Jurnal Manajemen | 14 |
| 15 | Rakhmina, D., Lisa, & Kartiko, J. J. | 2017 | Logam Merkuri Pada Masker Pemutih Wajah Di Pasar Martapura | Medical Laboratory Technology Journal | 14 |
| 16 | Setyaningrum, E. W., Hidayati, L., & Faizah, N. | 2025 | Hubungan Tingkat Pengetahuan Terhadap Penggunaan Kosmetik Pemutih Kulit Berlabel Halal di Kalangan Mahasiswa Daerah Istimewa Yogyakarta | Program Studi Farmasi, Fakultas Industri Halal, Universitas Nahdlatul Ulama Yogyakarta | 14 |
| 17 | Suryani, D., & Apriani, D. | 2022 | Faktor-Faktor Penentu dalam Pemilihan Kosmetik Aman Non Merkuri | Preventia: The Indonesian Journal of Public Health | 14 |
| 1 | Diana Tran, Joshua P Townley, Tanya M Barnes, Kerryn A Greive | 2015 | An antiaging skin care system containing alpha hydroxy acids and vitamins improves the biomechanical parameters of facial skin | Clinical, Cosmetic and Investigational Dermatology | 17 |
| 2 | Monika KrzyŰostan, Agata Wawrzyńczak, Izabela Nowak | 2024 | Controlled Release of Madecassoside and Asiaticoside of Centella asiatica L. Origin from Sustainable Cold-Processed Topical Formulations | Molecules | 18 |
| 3 | A.K. Langton, M.J. Sherratt, C.E.M. Griffiths, R.E.B. Watson | 2010 | A new wrinkle on old skin: the role of elastic fibres in skin ageing | International Journal of Cosmetic Science | 17 |
| 4 | W. Montagna, S. Kirchner, K. Carlisle | 1989 | Histology of sun-damaged human skin | Journal of the American Academy of Dermatology | 17 |
| 5 | R. Warren, V. Gartstein, A.M. Kligman, dkk. | 1991 | Age, sunlight, and facial skin: a histologic and quantitative study | Journal of the American Academy of Dermatology | 17 |
| 6 | C.K. Rokhsar, S. Lee, R.E. Fitzpatrick | 2005 | Review of photorejuvenation: devices, cosmeceuticals, or both? | Dermatologic Surgery | 17 |
| 7 | R.M. Lavker, K. Kaidbey, J.J. Leyden | 1992 | Effects of topical ammonium lactate on cutaneous atrophy from a potent topical corticosteroid | Journal of the American Academy of Dermatology | 17 |
| 8 | M. Ramos-e-Silva, L.R. Celem, S. Ramos-e-Silva, A.P. Fucci-da-Costa | 2013 | Anti-aging cosmetics: facts and controversies | Clinical Dermatology | 17 |
| 9 | J.K. Rivers | 2008 | The role of cosmeceuticals in antiaging therapy | Skin Therapy Letter | 17 |
| 10 | E.F. Bernstein, J. Lee, D.B. Brown, dkk. | 2001 | Glycolic acid treatment increases type I collagen mRNA and hyaluronic acid content of human skin | Dermatologic Surgery | 17 |
| 11 | D.L. Bissett, K. Miyamoto, P. Sun, dkk. | 2004 | Topical niacinamide reduces yellowing, wrinkling, red blotchiness, and hyperpigmented spots in aging facial skin | International Journal of Cosmetic Science | 17 |
| 12 | D.L. Bissett, J.E. Oblong, C.A. Berge | 2005 | Niacinamide: a B vitamin that improves aging facial skin appearance | Dermatologic Surgery | 17 |
| 13 | P.J. Matts, J.E. Oblong, D.L. Bissett | 2002 | A review of the range of effects of niacinamide in human skin | IFSCC Magazine | 17 |
| 14 | R.E. Fitzpatrick, E.F. Rostan | 2002 | Double-blind, half-face study comparing topical vitamin C and vehicle for rejuvenation of photodamage | Dermatologic Surgery | 17 |
| 15 | K. Sauermann, S. Jaspers, U. Koop, H. Wenck | 2004 | Topically applied vitamin C increases the density of dermal papillae in aged human skin | BMC Dermatology | 17 |
| 16 | P. Mayer | 1993 | The effects of vitamin E on the skin | Cosmetics & Toiletries | 17 |
| 17 | H. Mller, A. Ansmann, S. Wallat | 1989 | The effects of vitamin E on the skin in topical applications | Fat Science Technology | 17 |
| 18 | N. Akhtar, S.U. Zaman, B.A. Khan, dkk. | 2011 | Calendula extract: effects on mechanical parameters of human skin | Acta Poloniae Pharmaceutica | 17 |
| 19 | C.K. Huang, T.A. Miller | 2007 | The truth about over-the-counter topical anti-aging products: a comprehensive review | Aesthetic Surgery Journal | 17 |
| 20 | H. Dobrev | 2007 | In vivo study of skin mechanical properties in Raynaud's phenomenon | Skin Research and Technology | 17 |
| 21 | R.J. Koch, E.T. Cheng | 1999 | Quantification of skin elasticity changes associated with pulsed carbon dioxide laser skin resurfacing | Archives of Facial Plastic Surgery | 17 |
| 22 | H. Dobrev | 2000 | Use of Cutometer to assess epidermal hydration | Skin Research and Technology | 17 |
| 23 | M.L. Elson | 1993 | Treatment of photoaging-a personal comment and open study of the use of glycolic acid | Journal of Dermatological Treatment | 17 |
| 24 | C.M. Ditre, T.D. Griffin, G.F. Murphy, dkk. | 1996 | Effects of alpha-hydroxy acids on photoaged skin: a pilot clinical, histologic, and ultrastructural study | Journal of the American Academy of Dermatology | 17 |
| 25 | L.S. Moy, H. Murad, R.L. Moy | 1993 | Glycolic acid therapy: evaluation of efficacy and techniques in treatment of photodamage lesions | The American Journal of Cosmetic Surgery | 17 |
| 26 | C. Rubino, F. Farace, L.A. Dessy, dkk. | 2005 | A prospective study of anti-ageing topical therapies using a quantitative method of assessment | Plastic and Reconstructive Surgery | 17 |
| 27 | M.J. Stiller, J. Bartolone, R. Stern, dkk. | 1996 | Topical 8% glycolic acid and 8% L-lactic acid creams for the treatment of photodamaged skin | Archives of Dermatology | 17 |
| 28 | W.P. Smith | 1996 | Epidermal and dermal effects of topical lactic acid | Journal of the American Academy of Dermatology | 17 |
| 29 | P.K. Thibault, J. Wlodarczyk, A. Wenck | 1998 | A double-blind randomized clinical trial on the effectiveness of a daily glycolic acid 5% formulation in the treatment of photoaging | Dermatologic Surgery | 17 |
| 30 | J. Zussman, J. Ahdout, J. Kim | 2010 | Vitamins and photoaging: do scientific data support their use? | Journal of the American Academy of Dermatology | 17 |
| 31 | J.H. Saurat, L. Didierjean, E. Masgrau, dkk. | 1994 | Topical retinaldehyde on human skin: biologic effects and tolerance | Journal of Investigative Dermatology | 17 |
| 32 | B. Dreno, T. Fischer, E. Perosino, dkk. | 2008 | Management of skin ageing: how to combine cosmetic procedures | European Journal of Dermatology | 17 |
| 33 | B. Sun, L. Wu, Y. Wu, dkk. | 2020 | Therapeutic Potential of Centella asiatica and Its Triterpenes: A Review | Frontiers in Pharmacology | 18 |
| 34 | M.M. Hoque, I.K. Rafi, M.S. Hossain | 2023 | Centella asiatica: A mini review of its medicinal properties and different uses | World Journal of Advanced Research and Reviews | 18 |
| 35 | K.S. Park | 2021 | Pharmacological Effects of Centella asiatica on Skin Diseases: Evidence and Possible Mechanisms | Evidence-Based Complementary and Alternative Medicine | 18 |
| 36 | M. KrzyŰostan, I. Nowak | 2024 | Triterpenoid saponins derived from Centella asiatica L. | Przemysł Chemiczny | 18 |
| 37 | M. Zagrska-Dziok, A. Ziemlewska, T. Bujak, dkk. | 2021 | Cosmetic and Dermatological Properties of Selected Ayurvedic Plant Extracts | Molecules | 18 |
| 38 | S. Bandopadhyay, S. Mandal, M. Ghorai, dkk. | 2023 | Therapeutic properties and pharmacological activities of asiaticoside and madecassoside: A review | Journal of Cellular and Molecular Medicine | 18 |
| 39 | M. Suhail, I.H. Chiu, A. Ullah, dkk. | 2024 | Formulation and In Vitro Assessment of Polymeric pH-Responsive Nanogels of Chitosan for Sustained Delivery of Madecassoside | ACS Omega | 18 |
| 40 | W. Bylka, P. Znajdek-AwiŰeń, E. Studzińska-Sroka, M. Brzezińska | 2013 | Centella asiatica in cosmetology | Advances in Dermatology and Allergology | 18 |
| 1 | S. H. Shin, Y. H. Lee, N. K. Rho, dan K. Y. Park | 2023 | Skin Aging From Mechanisms to Interventions: Focusing on Dermal Aging | Frontiers in Physiology | 19 |
| 2 | M. Rinnerthaler, J. Bischof, M. K. Streubel, A. Trost, dan K. Richter | 2015 | Oxidative Stress in Aging Human Skin | Biomolecules | 19 |
| 3 | A. Ali, L. Colombe, P. Melanie, et al. | 2024 | Comparison of Facial Skin Ageing in Healthy Asian and Caucasian Females Quantified by in Vivo Line- Field Confocal Optical Coherence Tomography 3D Imaging | Skin Research and Technology | 19 |
| 4 | S. Nouveau-Richard, Z. Yang, S. Mac-Mary, et al. | 2005 | Skin Ageing: A Comparison Between Chinese and European Populations. A Pilot Study | Journal of Dermatological Science | 19 |
| 5 | A. M. Kligman, G. L. Grove, R. Hirose, dan J. J. Leyden | 1986 | Topical Tretinoin for Photoaged Skin | Journal of the American Academy of Dermatology | 19 |
| 6 | J. S. Weiss, C. N. Ellis, J. T. Headington, T. Tincoff, T. A. Hamilton, dan J. J. Voorhees | 1988 | Topical Tretinoin Improves Photoaged Skin. A Double- Blind Vehicle- Controlled Study | Journal of the American Medical Association | 19 |
| 7 | M. Zasada dan E. Budzisz | 2019 | Retinoids: Active Molecules Influencing Skin Structure Formation in Cosmetic and Dermatological Treatments | Postepy Dermatologii I Alergologii | 19 |
| 8 | D. Milosheska dan R. Roskar | 2022 | Use of Retinoids in Topical Antiaging Treatments: A Focused Review of Clinical Evidence for Conventional and Nanoformulations | Advances in Therapy | 19 |
| 9 | Y. F. Chang, L. C. Chen, D. H. Kim, S. H. Hsu, dan H. J. Chung | 2024 | Racial Differences in Tolerability of Topical Retinoids: A 15- Year Single- Center Retrospective Cohort Study | JAAD International | 19 |
| 10 | Z. Temova Rakusa, P. Skufca, A. Kristl, dan R. Roskar | 2021 | Retinoid Stability and Degradation Kinetics in Commercial Cosmetic Products | Journal of Cosmetic Dermatology | 19 |
| 11 | Z. Xin, X. Wu, T. Ji, et al. | 2019 | Bakuchiol: A Newly Discovered Warrior Against Organ Damage | Pharmacological Research | 19 |
| 12 | R. K. Chaudhuri dan K. Bojanowski | 2014 | Bakuchiol: A Retinol- Like Functional Compound Revealed by Gene Expression Profiling and Clinically Proven to Have Anti- Aging Effects | International Journal of Cosmetic Science | 19 |
| 13 | N. N. Nizam, S. Mahmud, S. M. A. Ark, M. Kamruzzaman, dan M. K. Hasan | 2023 | Bakuchiol, a Natural Constituent and Its Pharmacological Benefits | F1000Research | 19 |
| 14 | W. R. Swindell, K. Bojanowski, P. Singh, M. Randhawa, dan R. K. Chaudhuri | 2023 | Bakuchiol and Ethyl (Linoleate/Oleate) Synergistically Modulate Endocannabinoid Tone in Keratinocytes and Repress Inflammatory Pathway mRNAs | JID Innovations | 19 |
| 15 | M. J. Caterina | 2014 | TRP Channel Cannabinoid Receptors in Skin Sensation, Homeostasis, and Inflammation | ACS Chemical Neuroscience | 19 |
| 16 | S. Dhaliwal, I. Rybak, S. R. Ellis, et al. | 2019 | Prospective, Randomized, Double- Blind Assessment of Topical Bakuchiol and Retinol for Facial Photoageing | British Journal of Dermatology | 19 |
| 17 | A. Bluemke, A. P. Ring, J. Immeyer, et al. | 2022 | Multidirectional Activity of Bakuchiol Against Cellular Mechanisms of Facial Ageing - Experimental Evidence for a Holistic Treatment Approach | International Journal of Cosmetic Science | 19 |
| 18 | Z. D. Draelos, H. Gunt, J. Zeichner, dan S. Levy | 2020 | Clinical Evaluation of a Nature- Based Bakuchiol Anti- Aging Moisturizer for Sensitive Skin | Journal of Drugs in Dermatology | 19 |
| 19 | M. Cheng dan Z. Chen | 2017 | Screening of Tyrosinase Inhibitors by Capillary Electrophoresis With Immobilized Enzyme Microreactor and Molecular Docking | Electrophoresis | 19 |
| 20 | O. Ohno, T. Watabe, K. Nakamura, et al. | 2010 | Inhibitory Effects of Bakuchiol, Bavachin, and Isobavachalcone Isolated From Piper longum on Melanin Production in B16 Mouse Melanoma Cells | Bioscience, Biotechnology, and Biochemistry | 19 |
| 21 | C. Puyana, N. Chandan, dan M. Tsoukas | 2022 | Applications of Bakuchiol in Dermatology: Systematic Review of the Literature | Journal of Cosmetic Dermatology | 19 |
| 22 | J. E. Fanning, S. A. McGee, dan O. I. Ibrahim | 2024 | Human Clinical Trials Using Topical Bakuchiol Formulations for the Treatment of Skin Disorders: A Systematic Review | Journal of Drugs in Dermatology | 19 |
| 23 | M. Shoji, Y. Arakaki, T. Esumi, et al. | 2015 | Bakuchiol Is a Phenolic Isoprenoid With Novel Enantiomer- Selective Anti- Influenza A Virus Activity Involving Nrf2 Activation | Journal of Biological Chemistry | 19 |
| 24 | Q. Ma | 2013 | Role of nrf2 in Oxidative Stress and Toxicity | Annual Review of Pharmacology and Toxicology | 19 |
| 25 | S. Adhikari, R. Joshi, B. S. Patro, et al. | 2003 | Antioxidant Activity of Bakuchiol: Experimental Evidences and Theoretical Treatments on the Possible Involvement of the Terpenoid Chain | Chemical Research in Toxicology | 19 |
| 26 | H. Haraguchi, J. Inoue, Y. Tamura, dan K. Mizutani | 2000 | Inhibition of Mitochondrial Lipid Peroxidation by Bakuchiol, a Meroterpene From Psoralea corylifolia | Planta Medica | 19 |
| 27 | H. Haraguchi, J. Inoue, Y. Tamura, dan K. Mizutani | 2002 | Antioxidative Components of Psoralea corylifolia (Leguminosae) | Phytotherapy Research | 19 |
| 28 | K. F. Toth, D. Adam, T. Biro, dan A. Olah | 2019 | Cannabinoid Signaling in the Skin: Therapeutic Potential of the “C(Ut)annabinoid” System | Molecules | 19 |
| 29 | Q. Yu, H. M. Zou, S. Wang, Y. M. Xu, J. M. Li, dan N. Zhang | 2014 | Regulative Effect of Bakuchiol on ESF- 1 Cells Anti- Aging Gene | Zhong Yao Cai | 19 |
| 30 | H. H. Kwon, S. C. Choi, W. Y. Lee, J. Y. Jung, dan G. H. Park | 2018 | Clinical and Histological Evaluations of Enlarged Facial Skin Pores After Low Energy Level Treatments With Fractional Carbon Dioxide Laser in Korean Patients | Dermatologic Surgery | 19 |
| 31 | Y. Sugiyama- Nakagiri, K. Sugata, A. Hachiya, O. Osanai, A. Ohuchi, dan T. Kitahara | 2009 | Ethnic Differences in the Structural Properties of Facial Skin | Journal of Dermatological Science | 19 |
| 32 | F. Flament, G. Francois, H. Qiu, et al. | 2015 | Facial Skin Pores: A Multiethnic Study | Clinical, Cosmetic and Investigational Dermatology | 19 |
| 33 | S. Hayashi, K. Mimura, dan Y. Nishijima | 1989 | Changes in Surface Configuration of the Skin Caused by Ageing and Application of Cosmetics: Three- Dimensional Analysis According to a New System Based on Image Analysis and Fourier Transformation | International Journal of Cosmetic Science | 19 |
| 34 | Z. D. Draelos | 2011 | A Clinical Evaluation of the Comparable Efficacy of Hyaluronic Acid- Based Foam and Ceramide- Containing Emulsion Cream in the Treatment of Mild- To- Moderate Atopic Dermatitis | Journal of Cosmetic Dermatology | 19 |
| 35 | M. R. Hadiwidjaja, E. Yulianto, N. A. Chauwito, et al. | 2024 | Comparative Efficacy of Bakuchiol Oil and Encapsulated Bakuchiol Cream on Facial Skin Quality: A 28- Day Pilot Study | Journal of Pharmacy & Pharmacognosy Research | 19 |
| 36 | C. Zanchetta, A. Scandolera, dan R. Reynaud | 2025 | Hyaluronic Acid in Topical Applications: The Various Forms and Biological Effects of a Hero Molecule in the Cosmetics Industry | Biomolecules | 20 |
| 37 | Meyer, K.; Palmer, J.W. | 1936 | On the Nature of the Ocular Fluids | American Journal of Ophthalmology | 20 |
| 38 | Laurent, T.C.; Fraser, J.R.E. | 1992 | Hyaluronan | FASEB Journal | 20 |
| 39 | Wang, S.T.; Neo, B.H.; Betts, R.J. | 2021 | Glycosaminoglycans: Sweet as Sugar Targets for Topical Skin Anti-Aging | Clinical, Cosmetic and Investigational Dermatology | 20 |
| 40 | Chylińska, N.; Maciejczyk, M. | 2025 | Hyaluronic Acid and Skin: Its Role in Aging and Wound-Healing Processes | Gels | 20 |
| 41 | Abatangelo, G.; Vindigni, V.; Avruscio, G.; et al. | 2020 | Hyaluronic Acid: Redefining Its Role | Cells | 20 |
| 42 | Hung, W.-H.; Chen, P.-K.; Fang, C.-W.; Lin, Y.-C.; Wu, P.-C. | 2021 | Preparation and Evaluation of Azelaic Acid Topical Microemulsion Formulation: In Vitro and In Vivo Study | Pharmaceutics | 21 |
| 1 | Daniela Milosheska, Robert Roškar | 2022 | Use of Retinoids in Topical Antiaging Treatments: A Focused Review of Clinical Evidence for Conventional and Nanoformulations | Advanced Therapy (Adv Ther) | 22 |
| 2 | JW. Shin, SH. Kwon, JY. Choi, et al. | 2019 | Molecular mechanisms of dermal aging and antiaging approaches | International Journal of Molecular Sciences (Int J Mol Sci) | 22 |
| 3 | S. Zhang, E. Duan | 2018 | Fighting against skin aging: the way from bench to bedside | Cell Transplantation (Cell Transplant) | 22 |
| 4 | B. Ganguly, M. Hota, J. Pradhan | 2022 | Skin aging: implications of UV radiation, reactive oxygen species and natural antioxidants | IntechOpen | 22 |
| 5 | J. Krutmann, S. Schalka, REB. Watson, L. Wei, A. Morita | 2021 | Daily photoprotection to prevent photoaging | Photodermatology, Photoimmunology & Photomedicine (Photodermatol Photoimmunol Photomed) | 22 |
| 6 | ED. Lephart | 2016 | Skin aging and oxidative stress: equol’s anti-aging effects via biochemical and molecular mechanisms | Ageing Research Reviews (Ageing Res Rev) | 22 |
| 7 | L. Baumann | 2007 | Skin ageing and its treatment | Journal of Pathology (J Pathol) | 22 |
| 8 | JL. McCullough, KM. Kelly | 2006 | Prevention and treatment of skin aging | Annals of the New York Academy of Sciences (Ann N Y Acad Sci) | 22 |
| 9 | BH. Kim | 2010 | Safety evaluation and anti-wrinkle effects of retinoids on skin | Toxicological Research (Toxicol Res) | 22 |
| 10 | M. Zasada, E. Budzisz | 2019 | Retinoids: active molecules influencing skin structure formation in cosmetic and dermatological treatments | Postepy Dermatologii i Alergologii (Postepy Dermatol Alergol) | 22 |
| 11 | RR. Riahi, AE. Bush, PR. Cohen | 2016 | Topical retinoids: therapeutic mechanisms in the treatment of photodamaged skin | American Journal of Clinical Dermatology (Am J Clin Dermatol) | 22 |
| 12 | O. Sorg, C. Antille, G. Kaya, JH. Saurat | 2006 | Retinoids in cosmeceuticals | Dermatologic Therapy (Dermatol Ther) | 22 |
| 13 | Ivona Tomić, Sandra Mioāić, Ivan Pepić, Dubravka Šimiā, Jelena Filipović-Grāić | 2021 | Efficacy and Safety of Azelaic Acid Nanocrystal-Loaded In Situ Hydrogel in the Treatment of Acne Vulgaris | Pharmaceutics | 23 |
| 14 | A. Mohiuddin | 2019 | A Comprehensive Review of Acne Vulgaris | Journal of Clinical Research in Dermatology (J. Clin. Res. Dermatol.) | 23 |
| 15 | B. Dreno | 2010 | Recent data on epidemiology of acne | Annales de Dermatologie et de Venereologie | 23 |
| 1 | Dhaliwal, S., Rybak, I., Ellis, S.R., dkk. | 2019 | Prospective, randomized, double-blind assessment of topical bakuchiol and retinol for facial photoageing | British Journal of Dermatology | 24 |
| 2 | Bravo, B., Correia, P., Gonçalves Junior, J.E., dkk. | 2022 | Benefits of topical hyaluronic acid for skin quality and signs of skin aging: From literature review to clinical evidence | Dermatologic Therapy | 25 |
| 3 | Levin, J., Del Rosso, J.Q., Momin, S.B. | 2010 | How Much Do We Really Know About Our Favorite Cosmeceutical Ingredients? | The Journal of Clinical and Aesthetic Dermatology | 26 |
| 4 | Bissett, D.L., Miyamoto, K., Sun, P., dkk. | 2004 | Topical nicotinamide reduces yellowing, wrinkling, red blotchiness, and hyperpigmented spots in aging facial skin | International Journal of Cosmetic Science | 26 |
| 5 | Papakonstantinou, E., Roth, M., Karakiulakis, G. | 2012 | Hyaluronic acid: A key molecule in skin aging | Dermato-Endocrinology | 25 |
| 6 | Chaudhuri, R.K., Bojanowski, K. | 2014 | Bakuchiol: a retinol-like functional compound revealed by gene expression profiling and clinically proven to have anti-aging effects | International Journal of Cosmetic Science | 24 |
| 7 | McCullough, J.L., Weinstein, G.D. | 2002 | Clinical study of safety and efficacy of using topical kinetin 0.1% (Kinerase) to treat photodamaged skin | Cosmetic Dermatology | 26 |
| 8 | Wallo, W., Nebus, J., Leyden, J.J. | 2007 | Efficacy of soy moisturizer in photoaging: a double blind, vehicle controlled, 12-week study | Journal of Drugs in Dermatology | 26 |
| 9 | Chiu, A.E., Chan, J.L., Kern, D.G., dkk. | 2005 | Double-blinded, placebo-controlled trial of green tea extracts in the clinical and histologic appearance of photoaging skin | Dermatologic Surgery | 26 |
| 10 | Sorg, O., Antille, C., Kaya, G., dkk. | 2006 | Retinoids in cosmeceuticals | Dermatologic Therapy | 26 |
| 1 | Rawlings AV, Harding CR | 2004 | Moisturization and skin barrier function | Dermatol Ther | 27 |
| 2 | Tonćić RJ, Kezić S, HadŹavdić SL, Marinović B | 2018 | Skin barrier and dry skin in the mature patient | Clin Dermatol | 27 |
| 3 | Dąbrowska AK, Spano F, Derler S, Adlhart C, Spencer ND, Rossi RM | 2018 | The relationship between skin function, barrier properties, and body-dependent factors | Skin Research and Technology | 27 |
| 4 | Bouwstra JA, De Graaff A, Gooris GS, Nijsse J, Wiechers JW, Van Aelst AC | 2003 | Water distribution and related morphology in human stratum corneum at different hydration levels | J Invest Dermatol | 27 |
| 5 | Nishifuji K, Yoon JS | 2013 | The stratum corneum: the rampart of the mammalian body | Vet Dermatol | 27 |
| 6 | Roberts MS, Cross SE, Anissimov YG | 2004 | Factors affecting the formation of a skin reservoir for topically applied solutes | Skin Pharmacol Physiol | 27 |
| 7 | Briden ME, Green BA | 2006 | Topical exfoliation-clinical effects and formulating considerations | Cosmetic science and technology series | 27 |
| 8 | Kim SJ, Baek JH, Koh JS, Bae MI, Lee SJ, Shin MK | 2015 | The effect of physically applied alpha hydroxyl acids on the skin pore and comedone | Int J Cosmet Sci | 27 |
| 9 | Ahn B, Lee SH, Kim JH, Goh A, Park SG, Lee CK, Kang NG | 2019 | Identification and validation of amino acid-based mild exfoliating agents through a de novo screening method | Journal of Cosmetic Dermatology | 27 |
| 10 | Briden ME | 2004 | Alpha-hydroxyacid chemical peeling agents: case studies and rationale for safe and effective use | Cutis | 27 |
| 11 | Jacobs SW, Culbertson EJ | 2018 | Effects of topical mandelic acid treatment on facial skin viscoelasticity | Facial Plast Surg | 27 |
| 12 | Choińska R, Dąbrowska K, Řwisłocka R, Lewandowski W, Řwiergiel AH | 2021 | Antimicrobial properties of mandelic acid, gallic acid and their derivatives | Mini Rev Med Chem | 27 |
| 13 | W3jcik A, Kubiak M, Rotsztejn H | 2013 | Influence of azelaic and mandelic acid peels on sebum secretion in ageing women | Advances in Dermatology and Allergology/Postępy Dermatologii i Alergologii | 27 |
| 14 | Garg VK, Sinha S, Sarkar R | 2009 | Glycolic acid peels versus salicylic–mandelic acid peels in active acne vulgaris and post-acne scarring and hyperpigmentation: a comparative study | Dermatol Surg | 27 |
| 15 | Tein I, Bukovac SW, Xie ZW | 1996 | Characterization of the human plasmalemmal carnitine transporter in cultured skin fibroblasts | Arch Biochem Biophys | 27 |
| 16 | Peirano RI, Hamann T, D| 2012 | Topically applied l-carnitine effectively reduces sebum secretion in human skin | Journal of Cosmetic Dermatology | 27 |
|
| 17 | Fox LT, Gerber M, Du Preez JL, Grobler A, Du Plessis J | 2011 | Topical and transdermal delivery of L-carnitine | Skin Pharmacol Physiol | 27 |
| 18 | Zhao H, Liu C, Quan P, Wan X, Shen M, Fang L | 2017 | Mechanism study on ion-pair complexes controlling skin permeability: effect of ion-pair dissociation in the viable epidermis on transdermal permeation of bisoprolol | Int J Pharm | 27 |
| 19 | Kwon KC, Won JG, Seo JH, Kwon OS, Kim EH, Kim MS, Park SW | 2022 | Effects of arginine glutamate (RE: pair) on wound healing and skin elasticity improvement after CO2 laser irradiation | Journal of Cosmetic Dermatology | 27 |
| 20 | Hatanaka T, Kamon T, Morigaki S, Katayama K, Koizumi T | 2000 | Ion pair skin transport of a zwitterionic drug, cephalexin | J Controlled Release | 27 |
| 21 | Kwon KC, Lee SW, Kim H, Jeon H, Park SW | 2021 | Reduction of enlarged facial pore using ion-paired amino acid through enhancement in skin permeation and exfoliation: A placebo-controlled in vivo study | Journal of cosmetic dermatology | 27 |
| 22 | Kahan V, Andersen ML, Tomimori J, Tufik S | 2009 | Stress, immunity and skin collagen integrity: evidence from animal models and clinical conditions | Brain Behav Immun | 27 |
| 23 | Hakozaki T, Minwalla L, Zhuang J, Chhoa M, Matsubara A, Miyamoto K, Greatens A, Hillebrand GG, Bissett DL, Boissy RE | 2002 | The effect of niacinamide on reducing cutaneous pigmentation and suppression of melanosome transfer | Br J Dermatol | 28 |
| 24 | Bissett DL, Miyamoto K, Sun P, Li J, Berge CA | 2004 | Topical niacinamide reduces yellowing, wrinkling, red blotchiness, and hyperpigmented spots in aging facial skin | Int J Cosmet Sci | 28 |
| 25 | Bissett DL, Oblong JE, Berge CA | 2005 | Niacinamide: A B vitamin that improves aging facial skin appearance | Dermatol Surg | 28 |
| 26 | Otte N, Borelli C, Korting HC | 2005 | Nicotinamide—Biologic actions of an emerging cosmetic ingredient | Int J Cosmet Sci | 28 |
| 1 | Esp3sito ACC, Cassiano DP, da Silva CN, Lima PB, Dias JAF, Hassun K, et al. | 2022 | Update on melasma-part I: pathogenesis | Dermatol Ther (Heidelb) | 29 |
| 2 | Sarkar R, Jagadeesan S, Basavapura Madegowda S, Verma S, Hassan I, Bhat Y, et al. | 2019 | Clinical and epidemiologic features of melasma: a multicentric cross-sectional study from India | Int J Dermatol | 29 |
| 3 | Balkrishnan R, McMichael AJ, Camacho FT, Saltzberg F, Housman TS, Grummer S, et al. | 2003 | Development and validation of a health-related quality of life instrument for women with melasma | Br J Dermatol | 29 |
| 4 | Syder NC, Elbuluk N | 2023 | The history of melasma: Its roots and evolution | Dermatol Rev | 29 |
| 5 | V1zquez M, S1nchez JL | 1983 | The efficacy of a broad-spectrum sunscreen in the treatment of melasma | Cutis | 29 |
| 6 | Sarkar R, Ghunawat S, Narang I, Verma S, Garg VK, Dua R | 2019 | Role of broad-spectrum sunscreen alone in the improvement of melasma area severity index (MASI) and Melasma Quality of Life Index in melasma | J Cosmet Dermatol | 29 |
| 7 | Pennitz A, Kinberger M, Avila Valle G, Passeron T, Nast A, Werner RN | 2022 | Self-applied topical interventions for melasma: a systematic review and meta-analysis of data from randomized, investigator-blinded clinical trials | Br J Dermatol | 29 |
| 8 | Singh S, Jha B, Tiwary NK, Agrawal NK | 2019 | Does using a high sun protection factor sunscreen on face, along with physical photoprotection advice, in patients with melasma, change serum vitamin D concentration in Indian conditions? | Indian J Dermatol Venereol Leprol | 29 |
| 9 | Lakhdar H, Zouhair K, Khadir K, Essari A, Richard A, Seit1 S, et al. | 2007 | Evaluation of the effectiveness of a broad-spectrum sunscreen in the prevention of chloasma in pregnant women | J Eur Acad Dermatol Venereol | 29 |
| 10 | Dumbuya H, Grimes PE, Lynch S, Ji K, Brahmachary M, Zheng Q, et al. | 2020 | Impact of iron-oxide containing formulations against visible light-induced skin pigmentation in skin of color individuals | J Drugs Dermatol | 29 |
| 11 | Castanedo-Cazares JP, Hernandez-Blanco D, Carlos-Ortega B, Fuentes-Ahumada C, Torres-1lvarez B | 2014 | Near-visible light and UV photoprotection in the treatment of melasma: a double-blind randomized trial | Photodermatol Photoimmunol Photomed | 29 |
| 12 | Boukari F, Jourdan E, Fontas E, Montaudi1 H, Castela E, Lacour JP, et al. | 2015 | Prevention of melasma relapses with sunscreen combining protection against UV and short wavelengths of visible light | J Am Acad Dermatol | 29 |
| 13 | Gonz1lez-Molina V, Mart1-Pineda A, Gonz1lez N | 2022 | Topical treatments for melasma and their mechanism of action | J Clin Aesthet Dermatol | 29 |
| 14 | Janney MS, Subramaniyan R, Dabas R, Lal S, Das NM, Godara SK | 2019 | A randomized controlled study comparing the efficacy of topical 5% tranexamic acid solution versus 3% hydroquinone cream in melasma | J Cutan Aesthet Surg | 29 |
| 15 | Ennes SBP, Paschoalick RC, Alchorne MMDA | 2000 | A double-blind, comparative, placebo-controlled study of the efficacy and tolerability of 4% hydroquinone as a depigmenting agent in melasma | J Dermatol Treat | 29 |
| 16 | Nguyen J, Remyn L, Chung IY, Honigman A, Gourani-Tehrani S, Wutami I, et al. | 2021 | Evaluation of the efficacy of cysteamine cream compared to hydroquinone in the treatment of melasma: a randomised, double-blinded trial | Australas J Dermatol | 29 |
| 17 | Yeo Hye-yeon, Kim Jeong-hee | 2018 | Stability Determination of the Various Cosmetic Formulations containing Glycolic Acid | Journal of Fashion Business | 30 |
| 18 | Akahane Tomoki, Watanabe Daisuke, Shimizu Eri, Tanaka Kosei, Kaizu Kazuhiro | 2024 | Efficacy of Pseudo- Ceramide Absorption Into the Stratum Corneum and Effects on Transepidermal Water Loss and the Ceramide Profile | Journal of Cosmetic Dermatology (Wiley) | 31 |
| 19 | Cheng Yuan-Yuan, Peng Rui-Rui, Luo Hao, Zhao Wei | 2024 | Comparison of the efficacy of Hydroquinone cream versus Hydroquinone cream plus Danggui Shaoyao powder in the treatment of melasma | Advances in Dermatology and Allergology | 32 |
| 2 | Tanawatt Kootiratrakarn, Kowit Kampirapap, dan Chakkrapong Chunhasewee | 2015 | Epidermal Permeability Barrier in the Treatment of Keratosis Pilaris | Dermatology Research and Practice | 33 |
| 3 | S. Hwang dan R. A. Schwartz | 2008 | Keratosis pilaris: a common follicular hyperkeratosis | Cutis | 33 |
| 4 | K. Kikuchi, H. Kobayashi, T. Hirao, A. Ito, H. Takahashi, dan H. Tagami | 2003 | Improvement of mild inflammatory changes of the facial skin induced by winter environment with daily applications of a moisturizing cream: a half-side test of biophysical skin parameters, cytokine expression pattern and the formation of cornified envelope | Dermatology | 33 |
| 5 | L. Poskitt dan J. D. Wilkinson | 1994 | Natural history of keratosis pilaris | British Journal of Dermatology | 33 |
| 6 | B. Mevorah, A. Krayenbuhl, E. H. Bovey, dan G. D. van Melle | 1991 | Autosomal dominant ichthyosis and X-linked ichthyosis | Acta Dermato-Venereologica | 33 |
| 7 | G. Yosipovitch, A. DeVore, dan A. Dawn | 2007 | Obesity and the skin: skin physiology and skin manifestations of obesity | Journal of the American Academy of Dermatology | 33 |
| 8 | M. Augustine dan E. Jayaseelan | 2008 | Erythromelanosis follicularis faciei et colli: relationship with keratosis pilaris | Indian Journal of Dermatology, Venereology and Leprology | 33 |
| 9 | S. M. Clark, C. M. Mills, dan S. W. Lanigan | 2000 | Treatment of keratosis pilaris atrophicans with the pulsed tunable dye laser | Journal of Cutaneous Laser Therapy | 33 |
| 10 | N. L. Novick | 1984 | Practical management of widespread, atypical kerotosis pilaris | Journal of the American Academy of Dermatology | 33 |
| 11 | E. Berardesca, F. Distante, G. P. Vignoli, C. Oresajo, dan B. Green | 1997 | Alpha hydroxyacids modulate stratum corneum barrier function | British Journal of Dermatology | 33 |
| 12 | G. Grove dan C. Zerweck | 2004 | An evaluation of the moisturizing and anti-itch effects of a lactic acid and pramoxine hydrochloride cream | Cutis | 33 |
| 13 | S. J. Bashir, F. Dreher, A. L. Chew et al. | 2005 | Cutaneous bioassay of salicylic acid as a keratolytic | International Journal of Pharmaceutics | 33 |
| 14 | J. Ademola, C. Frazier, S. J. Kim, C. Theaux, dan X. Saudez | 2002 | Clinical evaluation of 40% urea and 12% ammonium lactate in the treatment of xerosis | The American Journal of Clinical Dermatology | 33 |
| 15 | S. J. Chapman, A. Walsh, S. M. Jackson, dan P. S. Friedmann | 1991 | Lipids, proteins and corneocyte adhesion | Archives of Dermatological Research | 33 |
| 16 | Qingliang Zhao, Cuixia Dai, Shanhui Fan, Jing Lv, dan Liming Nie | 2016 | Synergistic efficacy of salicylic acid with a penetration enhancer on human skin monitored by OCT and diffuse reflectance spectroscopy | Scientific Reports | 34 |
| 1 | James JT, Dubery IA. | 2009 | Pentacyclic triterpenoids from the medicinal herb, Centella asiatica (L.) urban. | Molecules | 35 |
| 2 | Karting T. | 1988 | Clinical applications of Centella asiatica (L.) Urb. In: Craker LE, Simon JE, editors. Herbs, Species, and Medicinal Plants: Recent Advances in Botany, Horticulture, and Pharmacology. Vol. 3. | Oryx Press | 35 |
| 3 | Sushma T, Sangeeta G, Gambir IS. | 2011 | Centella asiatica: A concise drug review with probable clinical uses. | J Stress Physiol Biochem | 35 |
| 4 | Jamil SS, Nizami Q, Salam M. | 2007 | Centella asiatica (Linn.) urban. A review. | Nat Prod Radiance | 35 |
| 5 | Brinkhaus B, Lindner M, Schuppan D, Hahn EG. | 2000 | Chemical, pharmacological and clinical profile of the East Asian medical plant Centella asiatica. | Phytomedicine | 35 |
| 6 | James J, Dubery I. | 2011 | Identification and quantification of triterpenoid centelloids in Centella asiatica (L.) urban by densitometric TLC. | J Planar Chromatogr | 35 |
| 7 | Hashim P, Sidek H, Helan MH, Sabery A, Palanisamy UD, Ilham M. | 2011 | Triterpene composition and bioactivities of Centella asiatica. | Molecules | 35 |
| 8 | Bylka W, Znajdek-Awizen P, Studzinska-Sroka E, Danczak-Pazdrowska A, Brzezinska M. | 2014 | Centella asiatica in dermatology: An overview. | Phytother Res | 35 |
| 9 | Duke JA. | 2002 | Handbook of Medicinal Herbs. 2nd ed. | CRC Press | 35 |
| 10 | Mohd Zainol MK, Abdul-Hamid A, Abu Bakar F, Pak Dek S. | 2009 | Effect of different drying methods on the degradation of selected flavonoids in Centella asiatica. | Int Food Res J | 35 |
| 11 | Lee J, Jung E, Kim Y, Park J, Park J, Hong S, et al. | 2006 | Asiaticoside induces human collagen I synthesis through TGFbeta receptor I kinase (TbetaRI kinase)-independent Smad signaling. | Planta Med | 35 |
| 12 | Shukla A, Rasik AM, Dhawan BN. | 1999 | Asiaticoside-induced elevation of antioxidant levels in healing wounds. | Phytother Res | 35 |
| 13 | Bylka W, Znajdek-Awizen P, Studzinska-Sroka E, Brzezinska M. | 2013 | Centella asiatica in cosmetology. | Postepy Dermatol Alergol | 35 |
| 14 | Flynn TC, Petros J, Clark RE, Viehman GE. | 2001 | Dry skin and moisturizers. | Clin Dermatol | 35 |
| 15 | Gioia F, Celleno L. | 2002 | The dynamics of transepidermal water loss (TEWL) from hydrated skin. | Skin Res Technol | 35 |
| 16 | Morganti P, Celleno L, Vasselli A. | 1999 | A new transdermal delivery cosmetic system to control the skin localized lipodystrophy. | J Appl Cosmetol | 35 |
| 1 | Andersen FA | 2008 | Final amended report on the safety assessment of methylparaben, ethylparaben, propylparaben, isopropylparaben, butylparaben, isobutylparaben, and benzylparaben as used in cosmetic products | Int J Toxicol | 1 |
| 2 | Iijima T, Yamaguchi T | 2007 | The improved Kolbe-Schmitt reaction using supercritical carbon dioxide | Tetrahedron Letters | 1 |
| 3 | Pazourekova S, Hojerova J, Klimova Z, et al. | 2013 | Dermal absorption and hydrolysis of methylparaben in different vehicles through intact and damaged skin: using a pig-ear model in vitro | Food Chem Toxicol | 1 |
| 4 | Caon T, Costa ACO, Leal de Oliveira MA, et al. | 2010 | Evaluation of the transdermal permeation of different paraben combinations through a pig ear skin model | Int J Pharm | 1 |
| 5 | Pedersen S, Marra F, Nicoli S, et al. | 2007 | In vitro skin permeation and retention of parabens from cosmetic formulations | Int J Cosmet Sci | 1 |
| 6 | Seo JE, Kim S, Kim BH | 2016 | In vitro skin absorption tests of three types of parabens using a Franz diffusion cell | J Expo Sci Environ Epidemiol | 1 |
| 7 | El Hussein S, Muret P, Berard M, et al. | 2007 | Assessment of principal parabens used in cosmetics after their passage through human epidermis-dermis layers (ex-vivo study) | Exp Dermatol | 1 |
| 8 | Janjua NR, Mortensen GK, Andersson AM, et al. | 2007 | Systemic uptake of diethyl phthalate, dibutyl phthalate, and butyl paraben following whole-body topical application and reproductive and thyroid hormone levels in humans | Environ Sci Technol | 1 |
| 9 | Hoberman AM, Schreur DK, Leazer T, et al. | 2008 | Lack of effect of butylparaben and methylparaben on the reproductive system in male rats | Birth Defects Res B Dev Reprod Toxicol | 1 |
| 10 | Abbas S, Greige-Gerges H, Karam N, et al. | 2010 | Metabolism of parabens (4-hydroxybenzoic acid esters) by hepatic esterases and UDP-glucuronosyltransferases in man | Drug Metab Pharmacokinet | 1 |
| 11 | Ozaki H, Sugihara K, Watanabe Y, et al. | 2013 | Comparative study of the hydrolytic metabolism of methyl-, ethyl-, propyl-, butyl-, heptyl- and dodecylparaben by microsomes of various rat and human tissues | Xenobiotica | 1 |
| 12 | Mathews JM, Brown SS, Patel PR, et al. | 2013 | Metabolism and disposition of 14Cn-butyl-p-hydroxybenzoate in male and female Harlan Sprague Dawley rats following oral administration and dermal application | Xenobiotica | 1 |
| 13 | Aubert N, Ameller T, Legrand JJ | 2012 | Systemic exposure to parabens: pharmacokinetics, tissue distribution, excretion balance and plasma metabolites of 14C-methyl-, propyl- and butylparaben in rats after oral, topical or subcutaneous administration | Food Chem Toxicol | 1 |
| 14 | Janjua NR, Frederiksen H, Skakkebaek NE, et al. | 2008 | Urinary excretion of phthalates and paraben after repeated whole-body topical application in humans | Int J Androl | 1 |
| 15 | Moos RK, Angerer J, Dierkes G, et al. | 2016 | Metabolism and elimination of methyl, iso- and n-butyl paraben in human urine after single oral dosage | Arch Toxicol | 1 |
| 16 | Kim MJ, Kwack SJ, Lim SK, et al. | 2015 | Toxicological evaluation of isopropylparaben and isobutylparaben mixture in Sprague-Dawley rats following 28 days of dermal exposure | Regul Toxicol Pharmacol | 1 |
| 17 | Salem AM, Said MM, Badawi MM, et al. | 2013 | Subchronic toxicity of propyl paraben in adult male rats | Egypt J Biochem Mol Biol | 1 |
| 18 | Boberg J, Axelstad M, Svingen T, et al. | 2016 | Multiple Endocrine Disrupting Effects in Rats Perinatally Exposed to Butylparaben | Toxicol Sci | 1 |
| 19 | Zhang L, Ding S, Qiao P, et al. | 2016 | n-Butylparaben induces male reproductive disorders via regulation of estradiol and estrogen receptors | J Appl Toxicol | 1 |
| 20 | Zhang L, Dong L, Ding S, et al. | 2014 | Effects of n-butylparaben on steroidogenesis and spermatogenesis through changed E(2) levels in male rat offspring | Environ Toxicol Pharmacol | 1 |
| 21 | Alam MS, Kurohmaru M | 2014 | Disruption of Sertoli cell vimentin filaments in prepubertal rats: an acute effect of butylparaben in vivo and in vitro | Acta Histochem | 1 |
| 22 | Vo TT, Yoo YM, Choi KC, et al. | 2010 | Potential estrogenic effect(s) of parabens at the prepubertal stage of a postnatal female rat model | Reprod Toxicol | 1 |
| 23 | Manservisi F, Gopalakrishnan K, Tibaldi E, et al. | 2015 | Effect of maternal exposure to endocrine disrupting chemicals on reproduction and mammary gland development in female Sprague-Dawley rats | Reprod Toxicol | 1 |
| 24 | Gazin V, Marsden E, Marguerite F | 2013 | Oral propylparaben administration to juvenile male Wistar rats did not induce toxicity in reproductive organs | Toxicol Sci | 1 |
| 25 | Perez Martin JM, Peropadre A, Herrero O, et al. | 2010 | Oxidative DNA damage contributes to the toxic activity of propylparaben in mammalian cells | Mutat Res | 1 |
| 26 | Tayama S, Nakagawa Y, Tayama K | 2008 | Genotoxic effects of environmental estrogen-like compounds in CHO-K1 cells | Mutat Res | 1 |
| 27 | Taxvig C, Dreisig K, Boberg J, et al. | 2012 | Differential effects of environmental chemicals and food contaminants on adipogenesis, biomarker release and PPARgamma activation | Mol Cell Endocrinol | 1 |
| 28 | Kjaerstad MB, Taxvig C, Andersen HR, et al. | 2010 | Mixture effects of endocrine disrupting compounds in vitro | Int J Androl | 1 |
| 29 | Pan S, Yuan C, Tagmount A, et al. | 2016 | Parabens and human epidermal growth factor receptor ligand cross-talk in breast cancer cells | Environ Health Perspect | 1 |
| 30 | Klopcic I, Kolsek K, Dolenc MS | 2015 | Glucocorticoid-like activity of propylparaben, butylparaben, diethylhexyl phthalate and tetramethrin mixtures studied in the MDA-kb2 cell line | Toxicol Lett | 1 |
| 31 | Kolsek K, Gobec M, Mlinaric Rascan I, et al. | 2015 | Screening of bisphenol A, triclosan and paraben analogues as modulators of the glucocorticoid and androgen receptor activities | Toxicol In Vitro | 1 |
| 32 | Pop A, Kiss B, Drugan T, et al. | 2014 | In vitro estrogenic/anti-estrogenic effects of certain food additives and cosmetic preservatives | Farmacia (Bucharest, Rom.) | 1 |
| 1 | Andersen, F.A. | 1998 | Final report on the safety assessment of glycolic acid, ammonium, calcium, potassium, and sodium glycolates, methyl, ethyl, propyl, and butyl glycolates, and lactic acid, ammonium, calcium, potassium, sodium, and TEA-lactates, methyl, ethyl, isopropyl, and butyl lactates, and lauryl, myristyl, and cetyl lactates. | Int. J. Toxicol. 17 (Suppl. 1), 1-241. | 2 |
| 2 | Andersen, F.A. | 2003 | Safety assessment of salicylic acid, butyloctyl salicylate, calcium salicylate, C12-15 alkyl salicylate, capryoyl salicylic acid, hexyldodecyl salicylate, isocetyl salicylate, isodecyl salicylate, magnesium salicylate, MEA-salicylate, ethylhexyl salicylate, potassium salicylate, methyl salicylate, myristyl salicylate, sodium salicylate, TEA-salicylate, and tridecyl salicylate. | Int. J. Toxicol. 22 (Suppl. 3), 1-108. | 2 |
| 3 | Bailer, A.J., and Portier, C.J. | 1988 | Effects of treatment-induced mortality and tumor-induced mortality on tests for carcinogenicity in small samples. | Biometrics 44, 417-431. | 2 |
| 4 | Bair, W.B., III, Hart, N., Einspahr, J., Liu, G., Dong, Z., Alberts, D., and Bowden, G.T. | 2002 | Inhibitory effects of sodium salicylate and acetylsalicylic acid on UVB-induced mouse skin carcinogenesis. | Cancer Epidemiol. Biomarkers Prev. 11, 1645-1652. | 2 |
| 5 | Bieler, G.S., and Williams, R.L. | 1993 | Ratio estimates, the delta method, and quantal response tests for increased carcinogenicity. | Biometrics 49, 793-801. | 2 |
| 6 | Bomhard, E. | 1996 | Acute toxicity data. Acute toxicological evaluation of salicylic acid. | J. Am. Coll. Toxicol. 15, S81. | 2 |
| 7 | Boorman, G.A., Montgomery, C.A., Jr., Eustis, S.L., Wolfe, M.J., McConnell, E.E., and Hardisty, J.F. | 1985 | Quality assurance in pathology for rodent carcinogenicity studies. In Handbook of Carcinogen Testing (H.A. Milman and E.K. Weisburger, Eds.), pp. 345-357. | Noyes Publications, Park Ridge, NJ. | 2 |
| 8 | Brody, H.J. | 1992 | Chemical Peeling. | Mosby Year Book. St. Louis. | 2 |
| 9 | Commission Internationale de l’Eclairage (CIE) | 1987 | A reference action spectrum for ultraviolet induced erythema in human skin. | CIE Journal 6, 17-22. | 2 |
| 10 | Commission Internationale de l’Eclairage (CIE) | 1998 | CIE Standard: Erythema reference action spectrum and standard erythema dose. | CIE Central Bureau Publication S007/E. | 2 |
| 11 | Cox, D.R. | 1972 | Regression models and life-tables. | J. R. Stat. Soc. B34, 187-220. | 2 |
| 12 | Davis, D.A., Kraus, A.L., Thompson, G.A., Olerich, M., and Odio, M.R. | 1997 | Percutaneous absorption of salicylic acid after repeated (14-day) in vivo administration to normal, acnegenic or aged human skin. | J. Pharm. Sci. 86, 896-899. | 2 |
| 13 | Ditre, C.M., Griffin, T.D., Murphy, G.F., Sueki, H., Telegan, B., Johnson, W.C., Yu, R.J., and Van Scott, E.J. | 1996 | Effects of α-hydroxy acids on photoaged skin: A pilot clinical, histologic, and ultrastructural study. | J. Am. Acad. Dermatol. 34, 187-195. | 2 |
| 14 | Dunnett, C.W. | 1955 | A multiple comparison procedure for comparing several treatments with a control. | J. Am. Stat. Assoc. 50, 1096-1121. | 2 |
| 15 | Eller, J.J., and Wolff, S. | 1941 | Skin peeling and scarification. | J. Am. Med. Assoc. 116, 934-938. | 2 |
| 16 | Elson, M.L. | 1993 | The molecular structure of glycolic acid and its importance in dermatology. | Cosmet. Dermatol. 6, 31-32. | 2 |
| 17 | Gerberick, G.F., House, R.V., Fletcher, R., and Ryan, C.A. | 1992 | Examination of the local lymph node assay for use in contact sensitization risk assessment. | Fundam. Appl. Toxicol. 19, 428-445. | 2 |
| 18 | Gibbs, N.K., Young, A.R., and Magnus, I.A. | 1985 | Failure of UVR dose reciprocity for skin tumorigenesis in hairless mice treated with 8-methoxypsoralen. | Photochem. Photobiol. 42, 39-42. | 2 |
| 19 | Griffin, T.D., Murphy, G.F., Sueki, H., Telegan, B., Johnson, W.C., Ditre, C.M., Yu, R.J., and Van Scott, E.J. | 1996 | Increased factor XIIIa transglutaminase expression in dermal dendrocytes after treatment with α-hydroxy acids: Potential physiologic significance. | J. Am. Acad. Dermatol. 34, 196-203. | 2 |
| 20 | Hong, J.T., Kim, E.J., Ahn, K.S., Jung, K.M., Yun, Y.P., Park, Y.K., and Lee, S.H. | 2001 | Inhibitory effect of glycolic acid on ultraviolet-induced skin tumorigenesis in SKH-1 hairless mice and its mechanism of action. | Mol. Carcinog. 31, 152-160. | 2 |
| 21 | International Agency for Research on Cancer (IARC) | 1992 | IARC Monographs on the Evaluation of Carcinogenic Risk to Humans: Solar and ultraviolet radiation. Vol. 55. | IARC, Lyon, France. | 2 |
| 22 | Jonckheere, A.R. | 1954 | A distribution-free k-sample test against ordered alternatives. | Biometrika 41, 133-145. | 2 |
| 23 | Kaidbey, K., Sutherland, B., Bennett, P., Wamer, W.G., Barton, C., Dennis, D., and Kornhauser, A. | 2003 | Topical glycolic acid enhances photodamage by ultraviolet light. | Photodermatol. Photoimmunol. Photomed. 19, 21-27. | 2 |
| 24 | Kaplan, E.L., and Meier, P. | 1958 | Nonparametric estimation from incomplete observations. | J. Am. Stat. Assoc. 53, 457-481. | 2 |
| 25 | Kraeling, M.E., and Bronaugh, R.L. | 1997 | In vitro percutaneous absorption of alpha hydroxy acids in human skin. | J. Soc. Cosmet. Chem. 48, 187-197. | 2 |
| 26 | Lin, A.N., and Nakatsui, T. | 1998 | Salicylic acid revisited. | Int. J. Dermatol. 37, 335-342. | 2 |
| 27 | McConnell, E.E., Solleveld, H.A., Swenberg, J.A., and Boorman, G.A. | 1986 | Guidelines for combining neoplasms for evaluation of rodent carcinogenesis studies. | JNCI 76, 283-289. | 2 |
| 28 | Maronpot, R.R., and Boorman, G.A. | 1982 | Interpretation of rodent hepatocellular proliferative alterations and hepatocellular tumors in chemical safety assessment. | Toxicol. Pathol. 10, 71-80. | 2 |
| 29 | Miyachi, Y., and Takigawa, M. | 1983 | Mechanisms of contact photosensitivity in mice. III. Predictive testing of chemicals with photoallergenic potential in mice. | Arch. Dermatol. 119, 736-739. | 2 |
| 30 | Murad, H., Shamban, A.T., and Premo, P.S. | 1995 | The use of glycolic acid as a peeling agent. | Dermatol. Clin. 13, 285-307. | 2 |
| 31 | Ohta, M., Ramachandran, C., and Weiner, N.D. | 1996 | Influence of formulation type on the deposition of glycolic acid and glycerol in hairless mouse skin following topical in vivo application. | J. Soc. Cosmet. Chem. 47, 97-107. | 2 |
| 32 | Patty, F.A. | 1963 | Industrial Hygiene and Toxicology (D.W. Fassett and D.D. Irish, Eds.) 2nd revised ed., Vol II, pp. 1803-1804. | John Wiley and Sons, Inc., New York. | 2 |
| 33 | Perier, C., Frey, J., Auboyer, C., Richard, A., Aulagnier, G., Heritier, P., and Gilloz, A. | 1988 | Accumulation of glycolic acid and glyoxylic acid in serum in cases of transient hyperglycinemia after transurethral surgery. | Clin. Chem. 34, 1471-1473. | 2 |
| 34 | Piegorsch, W.W., and Bailer, A.J. | 1997 | Statistics for Environmental Biology and Toxicology, Section 6.3.2. | Chapman and Hall, London. | 2 |
| 35 | Portier, C.J., and Bailer, A.J. | 1989 | Testing for increased carcinogenicity using a survival-adjusted quantal response test. | Fundam. Appl. Toxicol. 12, 731-737. | 2 |
| 36 | Portier, C.J., Hedges, J.C., and Hoel, D.G. | 1986 | Age-specific models of mortality and tumor onset for historical control animals in the National Toxicology Program’s carcinogenicity experiments. | Cancer Res. 46, 4372-4378. | 2 |
| 37 | Remington’s Pharmaceutical Sciences | 1990 | 18th ed., (A.R. Gennaro, Ed.), p. 768. | Mack Publishing Company, Easton, PA. | 2 |
| 38 | Rosan, A.M. | 1994 | The chemistry of alpha-hydroxy acids. | Cosmet. Dermatol. (Oct. Suppl.), 4-11. | 2 |
| 39 | Sams, R.L., II, Couch, L.H., Miller, B.J., Okerberg, C.V., Warbritton, A., Wamer, W.G., Beer, J.Z., and Howard, P.C. | 2001 | Basal cell proliferation in female SKH-1 mice treated with α- and β-hydroxy acids. | Toxicol. Appl. Pharmacol. 175, 76-82. | 2 |
| 40 | Sexton, C.R., and Rubin, M.G. | 1994 | An overview of alpha hydroxy acids. | Dermatol. Nurs. 6, 17-22. | 2 |
| 41 | Shirley, E. | 1977 | A non-parametric equivalent of Williams’ test for contrasting increasing dose levels of a treatment. | Biometrics 33, 386-389. | 2 |
| 42 | Smyth, H.F., Jr., Seaton, J., and Fischer, L. | 1941 | The single dose of some glycols and derivatives. | J. Ind. Hyg. Toxicol. 23, 259-268. | 2 |
| 43 | Tarone, R.E. | 1975 | Tests for trend in life table analysis. | Biometrika 62, 679-682. | 2 |
| 44 | Taylor, J.R., and Halprin, K.M. | 1975 | Percutaneous absorption of salicylic acid. | Arch. Dermatol. 111, 740-743. | 2 |
| 45 | Van Scott, E.J., and Yu, R.J. | 1984 | Hyper-keratinization, corneocyte cohesion, and alpha hydroxyl acids. | J. Am. Acad. Dermatol. 11, 867-879. | 2 |
| 46 | Van Scott, E.J., and Yu, R.J. | 1989 | Alpha hydroxy acids: Therapeutic potentials. | Can. J. Dermatol. 1, 108-112. | 2 |
| 47 | Wenninger, J.A., and McEwen, G.N. | 1995 | International Cosmetic Ingredient Handbook, 3rd ed. | Cosmetic, Toiletry, and Fragrance Association, Washington, DC. | 2 |
| 48 | Williams, D.A. | 1986 | A note on Shirley’s nonparametric test for comparing several dose levels with a zero-dose control. | Biometrics 42, 183-186. | 2 |
| 1 | Le Coz, C. J. dan Meyer, M. T. | 2003 | Contact allergy to decyl glucoside in antiseptic after body piercing | Contact Dermatitis | 3 |
| 2 | Fischer, E. | 1893 | Uber die Glucoside der Alkohole | Berichte | 3 |
| 3 | Barel, A. O., Paye, M., dan Maiback, H. I. (Editor) | 2009 | Handbook of Cosmetic Science and Technology | Penerbit Tidak Disebutkan | 3 |
| 4 | Gottschalck, T. E. dan Bailey, J. E. | 2010 | International Cosmetic Ingredient Dictionary and Handbook | Personal Care Products Council | 3 |
| 5 | Johnsen, M. A. | 2004 | The influence of particle size | Spray Technology and Marketing | 3 |
| 6 | Rothe, H., Fautz, R., Gerber, E., Neumann, L., Rettinger, K., Schuh, W., dan Gronewold, C. | 2011 | Special aspects of cosmetic spray safety evaluations: Principles on inhalation risk assessment | Toxicol Lett. | 3 |
| 7 | Bremmer, H. J., Prud'homme de Lodder, L. C. H., dan Engelen, J. G. M. | 2006 | Cosmetics Fact Sheet: To assess the risks for the consumer; Updated version for ConsExpo 4 | Penerbit Tidak Disebutkan | 3 |
| 8 | Aungst, B. J. | 1994 | Site-dependence and structure-effect relationships for alkylglycosides as transmucosal absorption promoters for insulin | Int. J. Pharm. | 3 |
| 9 | Kobierski, S., Ofori-Kwakye, K., ller, R. H., dan Keck, C. M. | 2009 | Resveratrol nanosuspensions for dermal application - production, characterization, and physical stability | Pharmazie | 3 |
| 10 | Mishra, P. R., Al, Shaal L., ller, R. H., dan Keck, C. M. | 2009 | Production and characterization of Hesperetin nanosuspensions for dermal delivery | Int J Pharm. | 3 |
| 11 | Penulis Tidak Disebutkan | 1977 | Glucoside Hydrolase Activity of Normal and Glucosylceramidotic Cultured Human Skin Fibroblasts | J Biological Chem. | 3 |
| 12 | Weber, N. dan Benning, H. | 1984 | Metabolism of orally administered alkyl beta-glycosides in the mouse | J Nutr. | 3 |
| 13 | Mishima, T., Katayama, Y., Takagi, Y., Ozeki, K., Hayakawa, T., dan Tsuge, H. | 2005 | Ethyl alpha-D-glucoside increases urine volume and causes renal morphologic changes in rats | J Nutr Sci Vitaminol. (Tokyo) | 3 |
| 14 | Tirumalasetty, P. P. dan Eley, J. G. | 2006 | Permeability enhancing effects of the alkylglycoside, octylglucoside, on insulin permeation across epithelial membrane in vitro | J Pharm Pharm Sci. | 3 |
| 15 | Penulis Tidak Disebutkan | 2004 | Ecology and toxicology of alkyl polyglycosides (Chapter 18) | Handbook of Detergents, Part B. Environmental Impact. Marcel Dekker | 3 |
| 16 | Messinger, H., Aulmann, W., Kleber, M., dan Koehl, W. | 2007 | Investigations on the effects of alkyl polyglucosides on development and fertility | Food Chem Toxicol. | 3 |
| 17 | Andersen, K. E. dan Goossens, A. | 2006 | Decyl glucoside contact allergy from a sunscreen product | Contact Dermatitis | 3 |
| 18 | Andrade, P., Goncalo, M., dan Figueiredo, A. | 2010 | Allergic contact dermatitis to decyl glucoside in Tinosorb M | Contact Dermatitis | 3 |
| 19 | Blondeel, A. | 2004 | Contact allergy to the mild surfactant decylglucoside | Contact Dermatitis | 3 |
| 20 | Horn, H. M., Murray, C., dan Aldridge, R. D. | 2005 | Contact allergy to decyl glucoside | Contact Dermatitis | 3 |
| 21 | Krehic, M. dan Avenel-Audran, M. | 2009 | Allergic contact dermatitis from decyl glucoside in an antiseptic lotion | Contact Dermatitis | 3 |
| 22 | Mehling, A., Kleber, M., dan Hensen, H. | 2007 | Comparative studies on the ocular and dermal irritation potential of surfactants | Food Chem Toxicol. | 3 |
| 23 | Corazza, M., Lauriola, M. M., Bianchi, A., Zappaterra, M., dan Virgili, A. | 2010 | Irritant and sensitizing potential of eight surfactants commonly used in skin cleansers: an evaluation of 105 patients | Dermatitis | 3 |
| 24 | Garcia, C., Ball, N., Cagen, S., dkk. | 2010 | Comparative testing for the identification of skin-sensitizing potentials of nonionic sugar lipid surfactants | Regul Toxicol Pharmacol. | 3 |
| 25 | Andersen, F. A. (Editor) | 2008 | Final report of the addendum to the safety assessment of n-Butyl Alcohol as used in cosmetics | Int J Toxicol. | 3 |
| 26 | Elder, R. L. (Editor) | 1988 | Final report on the safety assessment of Cetearyl Alcohol, Cetyl Alcohol, Isostearyl Alcohol, Myristyl Alcohol, and Behenyl Alcohol | J Am Coll Toxicol. | 3 |
| 27 | Elder, R. L. (Editor) | 1985 | Final report on the safety assessment of Stearyl Alcohol, Oleyl Alcohol, and Octyl Dodecanol | J Am Coll Toxicol. | 3 |
| 1 | Avonto, C., Wang, Y. H., Avula, B., Wang, M., Rua, D., & Khan, I. A. | 2016 | Comparative studies on the chemical and enzymatic stability of alpha‐and beta‐arbutin | International Journal of Cosmetic Science | 4 |
| 2 | Bang, S.H.; Han, S.J.; Kim, D.H. | 2008 | Hydrolysis of arbutin to hydroquinone by human skin bacteria and its effect on antioxidant activity | J. Cosmet. Dermatol. | 4 |
| 3 | Blaut, M., Braune, A., Wunderlich, S., Sauer, P., Schneider, H., & Glatt, H. | 2006 | Mutagenicity of arbutin in mammalian cells after activation by human intestinal bacteria | Food and Chemical Toxicology | 4 |
| 4 | Braga, V. C. D. C., Pianetti, G. A., & César, I. C. | 2020 | Comparative stability of arbutin in Arctostaphylos uva‐ursi by a new comprehensive stability‐indicating HPLC method | Phytochemical Analysis | 4 |
| 5 | Desmedt, B., Ates, G., Courselle, P., De Beer, J. O., Rogiers, V., Hendrickx, B., ... & De Paepe, K. | 2016 | In vitro Dermal Absorption of Hydroquinone: Protocol Validation and Applicability on Illegal Skin-Whitening Cosmetics | Skin Pharmacology and Physiology | 4 |
| 6 | Gallarate, M., Carlotti, M. E., Trotta, M., Grande, A. E., & Talarico, C. | 2004 | Photostability of naturally occurring whitening agents in cosmetic microemulsions | Journal of Cosmetic Science | 4 |
| 7 | Hazman, Ö., Sarıova, A., Bozkurt, M. F., & Ciğerci, İ. H. | 2021 | The anticarcinogen activity of β-arbutin on MCF-7 cells: Stimulation of apoptosis through estrogen receptor-α signal pathway, inflammation and genotoxicity | Molecular and Cellular Biochemistry | 4 |
| 8 | Jeon, J. S., Kim, B. H., Lee, S. H., Kwon, H. J., Bae, H. J., Kim, S. K., ... & Shin, H. C. | 2015 | Simultaneous determination of arbutin and its decomposed product hydroquinone in whitening creams using high‐performance liquid chromatography with photodiode array detection: Effect of temperature and pH on decomposition | International Journal of Cosmetic Science | 4 |
| 9 | Jurica, K., Benkovic, V., Sikiric, S., Kopjar, N., & Brcic Karaconji, I. | 2020 | Liver function and DNA integrity in hepatocytes of rats evaluated after treatments with strawberry tree (Arbutus unedo L.) water leaf extract and arbutin | Drug and Chemical Toxicology | 4 |
| 10 | Teeranachaideekul, V., Boonsongsawat, W., Asanawittaya, W., Jintapattanakit, A., Chantasart, D., & Wongrakpanich, A. | 2021 | Formulation and Pharmaceutical Evaluation of Extemporaneous α-arbutin Creams for the Treatment of Melasma | International Journal of Pharmaceutical Compounding | 4 |
| 1 | Lin, T.K.; Zhong, L.; Santiago, J.L. | 2018 | Anti-Inflammatory and Skin Barrier Repair Effects of Topical Application of Some Plant Oils | Int. J. Mol. Sci. | 5 |
| 2 | Gharby, S. | 2022 | Refining Vegetable Oils: Chemical and Physical Refining | Sci. World J. | 5 |
| 3 | Goyal, A.; Sharma, A.; Kaur, J.; Kumari, S.; Garg, M.; Sindhu, R.K.; Rahman, M.H.; Akhtar, M.F.; Tagde, P.; Najda, A.; et al. | 2022 | Bioactive-Based Cosmeceuticals: An Update on Emerging Trends | Molecules | 5 |
| 4 | Gharby, S.; Charrouf, Z. | 2022 | Argan Oil: Chemical Composition, Extraction Process, and Quality Control | Front. Nutr. | 5 |
| 5 | Nisbett, K.E.; Vendruscolo, L.F.; Koob, G.F. | 2024 | Indulging Curiosity: Preliminary Evidence of an Anxiolytic-like Effect of Castor Oil and Ricinoleic Acid | Nutrients | 5 |
| 6 | Bikiaris, N.D.; Balla, E.; Varitimidou, D.; Koronaiou, L.A.; Nikolaidis, N. | 2025 | From Plant to Skin: Exploring Alnus glutinosa Extracts for Cosmeceutical Applications | Antioxidants | 5 |
| 7 | Grzeszczak, J.; Wróblewska, A.; Klimowicz, A.; Gajewska, S.; Kucharski, Ł.; Koren, Z.C.; Janda-Milczarek, K. | 2024 | Antioxidant Activities of Ethanolic Extracts Obtained from α-Pinene-Containing Plants and Their Use in Cosmetic Emulsions | Antioxidants | 5 |
| 8 | Barna, A.S.; Maxim, C.; Trifan, A.; Blaga, A.C.; Cimpoesu, R.; Turcov, D.; Suteu, D. | 2023 | Preliminary Approaches to Cosmeceuticals Emulsions Based on N-Prolyl Palmitoyl Tripeptide-56 Acetate-Bakuchiol Complex Intended to Combat Skin Oxidative Stress | Int. J. Mol. Sci. | 5 |
| 9 | Vaughn, A.R.; Clark, A.K.; Sivamani, R.K.; Shi, V.Y. | 2018 | Natural Oils for Skin-Barrier Repair: Ancient Compounds now Backed by Modern Science | Am. J. Clin. Dermatol. | 5 |
| 10 | Fulton, J.E., Jr. | 1989 | Comedogenicity and irritancy of commonly used ingredients in skin care products | J. Soc. Cosmet. Chem. | 5 |
| 11 | Bakour, M.; Soulo, N.; Hammas, N.; Fatemi, H.E.; Aboulghazi, A.; Taroq, A.; Abdellaoui, A.; Al-Waili, N.; Lyoussi, B. | 2018 | The Antioxidant Content and Protective Effect of Argan Oil and Syzygium aromaticum Essential Oil in Hydrogen Peroxide-Induced Biochemical and Histological Changes | Int. J. Mol. Sci. | 5 |
| 12 | Yaghmur, A.; Aserin, A.; Mizrahi, Y.; Nerd, A.; Garti, N. | 1999 | Argan oil-in-water emulsions: Preparation and stabilization | J. Am. Oil. Chem. Soc. | 5 |
| 13 | Carandang, R.R. | 2024 | Preformulation studies of an emulsion containing commercially available argan oil | SciEnggJ | 5 |
| 14 | Smejkal, G.; Gross, V.; Lazarev, A. | 2024 | Theoretical and Experimental Determinations of the Hydrophilic–Lipophilic Balance (HLB) of Representative Oils and Lecithins | Colloids Interfaces | 5 |
| 15 | Wang, Q.; Zhang, H.; Han, Y.; Cui, Y.; Han, X. | 2023 | Study on the relationships between the oil HLB value and emulsion stabilization | RSC Adv. | 5 |
| 16 | Kolawole, O.M.; Akinlabi, K.Q.; Silva, B.O. | 2022 | Physicochemical and stability profile of castor oil emulsions stabilized using natural and synthetic emulsifiers | World J. Biol. Pharm. Health Sci. | 5 |
| 17 | Dapčević Hadnađev, T.; Dokić, P.; Krstonošić, V.; Hadnađev, M. | 2013 | Influence of oil phase concentration on droplet size distribution and stability of oil-in-water emulsions | Eur. J. Lipid Sci. Technol. | 5 |
| 18 | Bogdan, C.; Moldovan, M.L.; Man, I.M.; Crișan, M. | 2016 | Preliminary study on the development of an antistretch marks water-in-oil cream: Ultrasound assessment, texture analysis, and sensory analysis | Clin. Cosmet. Investig. Dermatol. | 5 |
| 19 | Panhwar, T.; Mahesar, S.A.; Kandhro, A.A.; Sheerazi, S.T.H.; Kori, A.H.; Laghari, Z.H.; Memon, J.U.R. | 2019 | Physicochemical composition and FTIR characterization of castor seed oil | Ukr. Food J. | 5 |
| 20 | Azizi, S.E.; Dalli, M.; Mzabri, I.; Berrichi, A.; Gseyra, N. | 2022 | Chemical characterization of oils produced by some native and introduced genotypes of argan tree in eastern Morocco using HPLC-DAD/GC-MS, and the evaluation of their physicochemical parameters | OCL | 5 |
| 21 | Kharbach, M.; Yu, H.; Kamal, R.; Barra, I.; Marmouzi, I.; Cherrah, Y.; Alaoui, K.; Bouklouze, A.; Heyden, Y.V. | 2021 | New insights into the Argan oil categories characterization: Chemical descriptors, FTIR fingerprints, and chemometric approaches | Talanta | 5 |
| 22 | Tamilvanan, S.; Kumar, B.A.; Senthilkumar, S.R.; Baskar, R.; Sekharan, T.R. | 2010 | Stability assessment of injectable castor oil-based nano-sized emulsion containing cationic droplets stabilized by poloxamer-chitosan emulsifier films | AAPS PharmSciTech | 5 |
| 23 | Rahali, Y. | 2020 | Influence of the span 80/Gelatin B combination on the formulation and stabilization of Argan oil-in-water emulsions | Int. J. Res. Pharm. Sci. | 5 |
| 24 | Udomrati, S.; Cheetangdee, N.; Gohtani, S.; Surojanametakul, V.; Klongdee, S. | 2020 | Emulsion stabilization mechanism of combination of esterified maltodextrin and Tween 80 in oil-in-water emulsions | Food Sci. Biotechnol. | 5 |
| 25 | Jeong, S.J.; Kim, S.; Echeverria-Jaramillo, E.; Shin, W.S. | 2021 | Effect of the emulsifier type on the physicochemical stability and in vitro digestibility of a lutein/zeaxanthin-enriched emulsion | Food Sci. Biotechnol. | 5 |
| 26 | El-Abbassi, A.; Neves, M.A.; Kobayashi, I.; Hafidi, A.; Nakajima, M. | 2013 | Preparation and characterization of highly stable monodisperse argan oil-in-water emulsions using microchannel emulsification | Eur. J. Lipid Sci. Technol. | 5 |
| 27 | Malinowska, P.; Gliszczyńska-Świgło, A.; Szymusiak, H. | 2017 | Commercial plant extracts may act as antioxidants or pro-oxidants in cosmetic emulsions based on argan oil | J. Cosmet. Sci. | 5 |
| 28 | Xavier-Junior, F.H.; Vauthier, C.; Morais, A.R.; Alencar, E.N.; Egito, E.S. | 2017 | Microemulsion systems containing bioactive natural oils: An overview on the state of the art | Drug Dev. Ind. Pharm. | 5 |
| 1 | Tomczykowa, M.; Wróblewska, M.; Winnicka, K.; Wieczorek, P.; Majewski, P.; Celińska-Janowicz, K.; Sawczuk, R.; Miltyk, W.; Tryniszewska, E.; Tomczyk, M. | 2018 | Novel Gel Formulations as Topical Carriers for the Essential Oil of Bidens tripartita for the Treatment of Candidiasis | Molecules | 6 |
| 2 | Förster, A.H.; Herrington, T.M. | 1998 | Rheology of two commercially available cosmetic oil in water emulsions | Int. J. Cosmet. Sci. | 6 |
| 3 | Vitale, M.; Truchuelo, M.T.; Nobile, V.; Gómez-Sánchez, M.J. | 2024 | Clinical Tolerability and Efficacy Establishment of a New Cosmetic Treatment Regimen Intended for Sensitive Skin | Appl. Sci. | 6 |
| 4 | Parasassi, T.; Costa, G.; Krasnowska, E.; Pittaluga, E. | 2017 | Combination Comprising N-Acetyl-L-Cysteine and Its Use | U.S. Patent 10,300,038 | 6 |
| 5 | Luo, A.; Liu, X.; Hu, Q.; Yang, M.; Jiang, H.; Liu, W. | 2022 | Efficacy of N-acetylcysteine on idiopathic or postinfective non-cystic fibrosis bronchiectasis: A systematic review and meta-analysis protocol | BMJ Open | 6 |
| 6 | Yener, G.; İncegülke, T. | 2009 | Development of a w/o/w-Emulsion Containing N-Acetylcysteine for Cosmetic Use | Sci. Pharm. | 6 |
| 7 | Zafarullah, M.; Li, W.; Qureshi, M.; Mukhtar, H. | 2003 | Molecular mechanisms of N-acetylcysteine actions | Cell. Mol. Life Sci. | 6 |
| 8 | Meister, A. | 1994 | Glutathione metabolism and its selective modification | J. Biol. Chem. | 6 |
| 9 | Weschawalit, S.; Thongthip, S.; Phutrakool, P.; Asawanonda, P. | 2017 | Glutathione and its antiaging and antimelanogenic effects | Clin. Cosmet. Investig. Dermatol. | 6 |
| 10 | Sunitha, K.; Hemshekhar, M.; Thushara, R.M.; Santhosh, M.S.; Yariswamy, M.; Kemparaju, K.; Girish, K.S. | 2013 | N-Acetylcysteine amide: A derivative to fulfill the promises of N-Acetylcysteine | Free. Radic. Res. | 6 |
| 11 | Sekhar, R.V.; Patel, S.G.; Guthikonda, A.P.; Reid, M.; Balasubramanyam, A.; Taffet, G.E.; Jahoor, F. | 2011 | Deficient Synthesis of Glutathione Underlies Oxidative Stress in Aging and Can Be Corrected by Dietary Cysteine and Glycine Supplementation | Am. J. Clin. Nutr. | 6 |
| 12 | Harbin, R.; Stephens, L. | 2004 | Extended Storage of Reduced Glutathione Solutions | U.S. Patent US 6,835,811 B1 | 6 |
| 13 | Atkuri, K.R.; Mantovani, J.J.; Herzenberg, L.A.; Herzenberg, L.A. | 2007 | N-Acetylcysteine—A safe antidote for cysteine/glutathione deficiency | Curr. Opin. Pharmacol. | 6 |
| 14 | Briganti, S.; Picardo, M. | 2003 | Antioxidant activity, lipid peroxidation and skin diseases. What's new | J. Eur. Acad. Dermatol. Venereol. | 6 |
| 15 | de Andrade, K.Q.; Moura, F.A.; dos Santos, J.M.; de Araújo, O.R.; de Farias Santos, J.C.; Goulart, M.O. | 2016 | Oxidative stress and inflammation in hepatic diseases: Therapeutic possibilities of N-acetylcysteine | Int. J. Mol. Sci. | 6 |
| 16 | Alzahrani, T.F.; Alotaibi, S.M.; Alzahrani, A.A.; Alzahrani, A.F.; Alturki, L.E.; Alshammari, M.M.; Alharbi, R.A.; Alanazi, S.I.; Alshammari, W.Z.; Algarni, A.S. | 2025 | Exploring the Safety and Efficacy of Glutathione Supplementation for Skin Lightening: A Narrative Review | Cureus | 6 |
| 17 | Lu, S.C. | 2009 | Regulation of Glutathione Synthesis | Mol. Asp. Med. | 6 |
| 18 | Samuni, Y.; Goldstein, S.; Dean, O.M.; Berk, M. | 2013 | The Chemistry and Biological Activities of N-Acetylcysteine | Biochim. Biophys. Acta | 6 |
| 19 | Tsai, M.-L.; Huang, H.-P.; Hsu, J.-D.; Lai, Y.-R.; Hsiao, Y.-P.; Lu, F.-J.; Chang, H.-R. | 2014 | Topical N-Acetylcysteine Accelerates Wound Healing in Vitro and in Vivo via the PKC/Stat3 Pathway | Int. J. Mol. Sci. | 6 |
| 20 | Nakai, K.; Yoneda, K.; Murakami, Y.; Koura, A.; Maeda, R.; Tamai, A.; Ishikawa, E.; Yokoi, I.; Moriue, J.; Moriue, T.; et al. | 2015 | Effects of topical N-acetylcysteine on skin hydration/transepidermal water loss in healthy volunteers and atopic dermatitis patients | Ann. Dermatol. | 6 |
| 21 | Stachura, A.; Sobczak, M.; Kędra, K.; Kopka, M.; Kopka, K.; Włodarski, P.K. | 2024 | The Influence of N-Acetylcysteine-Enriched Hydrogels on Wound Healing in a Murine Model of Type II Diabetes Mellitus | Int J Mol Sci. | 6 |
| 22 | Sadowska, A.M.; Manuel-Y-Keenoy, B.; De Backer, W.A. | 2007 | Antioxidant and Anti-inflammatory Efficacy of NAC in Chronic Wounds: A Literature Review | Pulm. Pharmacol. Ther. | 6 |
| 23 | Rarinca, V.; Gurzu, I.-L.; Nicoara, M.N.; Ciobica, A.; Visternicu, M.; Ionescu, C.; Balmus, I.M.; Plavan, G.-I.; Todirascu-Ciornea, E.; Gurzu, B. | 2025 | Neurobehavioral and Oxidative Stress Effects of SiO 2 Nanoparticles in Zebrafish and the Protective Role of N-Acetylcysteine | Biomedicines | 6 |
| 24 | Kang, S.; Chung, J.H.; Lee, J.H.; Fisher, G.J.; Wan, Y.S.; Duell, E.A.; Voorhees, J.J. | 2003 | Topical N-acetyl cysteine and genistein prevent ultraviolet-light-induced signaling that leads to photoaging in human skin in vivo | J. Investig. Dermatol. | 6 |
| 25 | Cotter, M.A.; Thomas, J.; Cassidy, P.; Robinette, K.; Jenkins, N.; Florell, S.R.; Leachman, S.; Samlowski, W.E.; Grossman, D. | 2007 | N-acetylcysteine protects melanocytes against oxidative stress/damage and delays onset of ultraviolet-induced melanoma in mice | Clin. Cancer Res. | 6 |
| 26 | Oguz, A.; Uslukaya, O.; Alabalık, U.; Turkoglu, A.; Kapan, M.; Bozdag, Z. | 2015 | Topical N-acetylcysteine improves wound healing comparable to dexpanthenol: An experimental study | Int. Surg. | 6 |
| 27 | Muñoz-Sánchez, G.; Godínez-Méndez, L.A.; Fafutis-Morris, M.; Delgado-Rizo, V. | 2023 | Effect of Antioxidant Supplementation on NET Formation Induced by LPS In Vitro; the Roles of Vitamins E and C, Glutathione, and N-acetyl Cysteine | Int. J. Mol. Sci. | 6 |
| 28 | Zakowska-Biemans, S.; Kostyra, E. | 2023 | Sensory profile, consumers' perception and liking of wheat–Rye bread fortified with dietary fibre | Appl. Sci. | 6 |
| 29 | Krochmal-Marczak, B.; Tobiasz-Salach, R.; Kaszuba, J. | 2020 | The effect of adding oat flour on the nutritional and sensory quality of wheat bread | Br. Food J. | 6 |
| 30 | Tafuro, G.; Costantini, A.; Baratto, G.; Francescato, S.; Busata, L.; Semenzato, A. | 2021 | Characterization of Polysaccharidic Associations for Cosmetic Use: Rheology and Texture Analysis | Cosmetics | 6 |
| 31 | Gómez-Farto, A.; Jiménez-Escobar, A.L.; Pérez-González, N.; Castán, H.; Clares, B.; Arias-Santiago, S.; Montero-Vílchez, T. | 2024 | Development of an Emulgel for the Effective Treatment of Atopic Dermatitis: Biocompatibility and Clinical Investigation | Gels | 6 |
| 32 | Bîrsan, M.; Bibire, N.; Panainte, A.D.; Silași, O.; Antonoaea, P.; Ciurba, A.; Cristofor, A.C.; Wroblewska, M.; Sosnowska, K. | 2020 | The influence of the preparation method on the characteristics of a new cosmetic gel based on hyaluronic acid and matrix-forming polymers | Mater. Plast. | 6 |
| 33 | Juncan, A.M.; Rus, L.-L.; Morgovan, C.; Loghin, F. | 2024 | Evaluation of the Safety of Cosmetic Ingredients and Their Skin Compatibility through In Silico and In Vivo Assessments of a Newly Developed Eye Serum | Toxics | 6 |
| 34 | Dahmer, D.; Scandorieiro, S.; Bigotto, B.G.; Bergamini, T.A.; Germiniani-Cardozo, J.; da Costa, I.M.; Kobayashi, R.K.T.; Nakazato, G.; Borsato, D.; Prudencio, S.H.; et al. | 2023 | Multifunctional Biotechnological Lip Moisturizer for Lip Repair and Hydration: Development, In Vivo Efficacy Assessment and Sensory Analysis | Cosmetics | 6 |
| 35 | Slavkova, M.; Lazov, C.; Spassova, I.; Kovacheva, D.; Tibi, I.P.-E.; Stefanova, D.; Tzankova, V.; Petrov, P.D.; Yoncheva, K. | 2024 | Formulation of Budesonide-Loaded Polymeric Nanoparticles into Hydrogels for Local Therapy of Atopic Dermatitis | Gels | 6 |
| 36 | Wang, Y.; Yue, Y.; Jia, R.; Liu, X.; Cheng, Z.; Cheng, Y.; Xu, Y.; Xie, Z.; Xia, H. | 2023 | Design and Evaluation of Paeonol-Loaded Liposomes in Thermoreversible Gels for Atopic Dermatitis | Gels | 6 |
| 37 | Nicol, N.H.; Rippke, F.; Weber, T.M.; Hebert, A.A. | 2021 | Daily Moisturization for Atopic Dermatitis: Importance, Recommendations, and Moisturizer Choices | J. Nurse Pract. | 6 |
| 38 | Simões, A.; Veiga, F.; Vitorino, C. | 2019 | Developing Cream Formulations: Renewed Interest in an Old Problem | J. Pharm. Sci. | 6 |
| 39 | Sheraz, M.A.; Khan, M.F.; Ahmed, S.; Kazi, S.H.; Khattak, S.R.; Ahmad, I. | 2014 | Factors affecting formulation characteristics and stability of ascorbic acid in water-in-oil creams | Int. J. Cosmet. Sci. | 6 |
| 40 | Abu Zayed, M.; Thean, Y.; Jaymin, C.; Walsh, T. | 2023 | Assessing and Predicting Physical Stability of Emulsion-Based Topical Semisolid Products: A Review | J. Pharm. Sci. | 6 |
| 41 | Ali, A.; Skedung, L.; Burleigh, S.; Lavant, E.; Ringstad, L.; Anderson, C.D.; Wahlgren, M.; Engblom, J. | 2022 | Relationship between sensorial and physical characteristics of topical creams: A comparative study on effects of excipients | Int. J. Pharm. | 6 |
| 42 | Terescenco, D.; Terescenco, N.; Picard, C.; Savary, G. | 2020 | Sensory perception of textural properties of cosmetic Pickering emulsions | Int. J. Cosmet. Sci. | 6 |
| 43 | Tang, T.; Tang, W.; Zhang, J.; Chen, S.; Chen, N.; Zhu, H.; Ge, G.; Zhang, S. | 2015 | Tactile Perception of Skin and Skin Cream | Tribol. Lett. | 6 |
| 44 | Moussour, M.; Lavarde, M.; Pensé-Lhéritier, A.M.; Bouton, F. | 2017 | Sensory analysis of cosmetic powders: Personal care ingredients and emulsions | Int. J. Cosmet. Sci. | 6 |
| 45 | Edwards, E.K. | 1984 | Allergic Reaction to Phenyl Dimethicone in a Sunscreen | Arch. Dermatol. | 6 |
| 46 | Oyafuso, M.H.; Carvalho, F.C.; Chiavacci, L.A.; Gremião, M.P.; Chorilli, M. | 2015 | Design and Characterization of Silicone and Surfactant Based Systems for Topical Drug Delivery | J. Nanosci. Nanotechnol. | 6 |
| 47 | Tafuro, G.; Costantini, A.; Piatto, M.; Lucchetti, S.; Francescato, S.; Busata, L.; Baratto, G.; Semenzato, A. | 2024 | Eco-Designing Cosmetic Products while Preserving the Sensorial-Application Properties: An Instrumental Approach toward Sustainable Formulations | Cosmetics | 6 |
| 48 | Tafuro, G.; Di Domenico, E.; Costantini, A.; Francescato, S.; Busata, L.; Baratto, G.; Semenzato, A. | 2022 | Stability and Application Properties of Surfactant-Free Cosmetic Emulsions: An Instrumental Approach to Evaluate Their Potential | Cosmetics | 6 |
| 49 | Imbart, S.; Laplanche, A.; Ruzic, C.; Lavarde, M.; Marull-Tufeu, S.; Bernard, C.; Pensé-Lhéritier, A.-M.; Aoussat, A. | 2022 | Design of a Sensorial-Instrumental Correlation Methodology for a Category of Cosmetic Products: O/W Emulsions | Cosmetics | 6 |
| 50 | Adejokun, D.A.; Dodou, K. | 2021 | A Novel Quality Control Method for the Determination of the Refractive Index of Oil-in-Water Creams and Its Correlation with Skin Hydration | Cosmetics | 6 |
| 51 | Gore, E.; Picard, C.; Savary, G. | 2018 | Spreading behavior of cosmetic emulsions: Impact of the oil phase | Biotribology | 6 |
| 52 | Gore, E.; Picard, C.; Savary, G. | 2020 | Complementary approaches to understand the spreading behavior on skin of O/W emulsions containing different emollients | Colloids Surf. B Biointerfaces | 6 |
| 53 | Hadjiefstathiou, C.; Manière, A.; Attia, J.; Pion, F.; Ducrot, P.; Grisel, M.; Gore, E. | 2024 | Sensory signature of lignins, new generation of bio-based ingredients in cosmetics | Int. J. Biol. Macromol. | 6 |
| 54 | Zanatta, C.F.; Sato, A.M.; Camargo, F.B.; Campos, P.M.; Rocha-Filho, P.A. | 2010 | Rheological behavior, zeta potential, and accelerated stability tests of Buriti oil ( Mauritia flexuosa) emulsions containing lyotropic liquid crystals | Drug Dev. Ind. Pharm. | 6 |
| 1 | Pavlačková, J.; Egner, P.; Mokrejš, P.; Janalíková, M. | 2024 | Formulating Sustainable Emulsions: Mandelic Acid and Essential Oils as Natural Preservatives | Molecules | 7 |
| 2 | Amberg, N.; Fogarassy, C. | 2019 | Green Consumer Behavior in the Cosmetics Market | Resources | 7 |
| 3 | Halla, N.; Fernandes, I.; Heleno, S.; Costa, P.; Boucherit-Otmani, Z.; Boucherit, K.; Rodrigues, A.; Ferreira, I.; Barreiro, M. | 2018 | Cosmetics Preservation: A Review on Present Strategies | Molecules | 7 |
| 4 | Catovic, C.; Martin, S.; Desaint, S.; Borges, C.; Lesouhaitier, H.; Roullet, F.; Bresciani, N.; Jouault, A.-M.; Poulet, V.; Luc, J.; et al. | 2020 | Development of a Standardized Method to Evaluate the Protective Efficiency of Cosmetic Packaging against Microbial Contamination | AMB Express | 7 |
| 5 | Luger, T.; Amagai, M.; Dreno, B.; Dagnelie, M.-A.; Liao, W.; Kabashima, K.; Schikowski, T.; Proksch, E.; Elias, P.M.; Simon, M.; et al. | 2021 | Atopic Dermatitis: Role of the Skin Barrier, Environment, Microbiome, and Therapeutic Agents | J. Dermatol. Sci. | 7 |
| 6 | Lundov, M.D.; Moesby, L.; Zachariae, C.; Johansen, J.D. | 2009 | Contamination Versus Preservation of Cosmetics: A Review on Legislation, Usage, Infections, and Contact Allergy | Contact Dermat. | 7 |
| 7 | Neza, E.; Centini, M. | 2016 | Microbiologically Contaminated and Over-Preserved Cosmetic Products According Rapex 2008–2014 | Cosmetics | 7 |
| 8 | Kim, H.W.; Seok, Y.S.; Cho, T.J.; Rhee, M.S. | 2020 | Risk Factors Influencing Contamination of Customized Cosmetics Made On-the-Spot: Evidence from the National Pilot Project For Public Health | Sci. Rep. | 7 |
| 9 | Senthilkumar, K.; Vijayalakshmi, A.; Jagadeesan, M.; Somasundaram, A.; Pitchiah, S.; Gowri, S.S.; Ali Alharbi, S.; Javed Ansari, M.; Ramasamy, P. | 2024 | Preparation of self-preserving personal care cosmetic products using multifunctional ingredients and other cosmetic ingredients | Sci. Rep. | 7 |
| 10 | Herman, A. | 2019 | Antimicrobial Ingredients as Preservative Booster and Components of Self-Preserving Cosmetic Products | Curr. Microbiol. | 7 |
| 11 | Fransway, A.F.; Fransway, P.J.; Belsito, D.V.; Warshaw, E.M.; Sasseville, D.; Fowler, J.F.; DeKoven, J.G.; Pratt, M.D.; Maibach, H.I.; Taylor, J.S.; et al. | 2019 | Parabens | Dermatitis | 7 |
| 12 | Matwiejczuk, N.; Galicka, A.; Brzóska, M.M. | 2020 | Review of the Safety of Application of Cosmetic Products Containing Parabens | J. Appl. Toxicol. | 7 |
| 13 | Cherian, P.; Zhu, J.; Bergfeld, W.F.; Belsito, D.V.; Hill, R.A.; Klaassen, C.D.; Liebler, D.C.; Marks, J.G.; Shank, R.C.; Slaga, T.J.; et al. | 2020 | Amended Safety Assessment of Parabens as Used in Cosmetics | Int. J. Toxicol. | 7 |
| 14 | Radu, C.-M.; Radu, C.C.; Bochiș, S.-A.; Arbănași, E.M.; Lucan, A.I.; Murvai, V.R.; Zaha, D.C. | 2023 | Revisiting the Therapeutic Effects of Essential Oils on the Oral Microbiome | Pharmacy | 7 |
| 15 | Muyima, N.Y.O.; Zulu, G.; Bhengu, T.; Popplewell, D. | 2002 | The Potential Application of Some Novel Essential Oils as Natural Cosmetic Preservatives in an Aqueous Cream Formulation | Flavour Fragr. J. | 7 |
| 1 | Bocheva, G.; Slominski, R.M.; Slominski, A.T. | 2023 | Environmental Air Pollutants Affecting Skin Functions with Systemic Implications | Int. J. Mol. Sci. | 8 |
| 2 | Konya, I.; Shishido, I.; Nemoto, M.; Yano, R. | 2024 | Risk factors of skin barrier dysfunction in older adults: A systematic review | Jpn. J. Nurs. Sci. | 8 |
| 3 | Trompette, A.; Ubags, N.D. | 2023 | Skin barrier immunology from early life to adulthood | Mucosal Immunol. | 8 |
| 4 | Rajkumar, J.; Chandan, N.; Lio, P.; Shi, V. | 2023 | The Skin Barrier and Moisturization: Function, Disruption, and Mechanisms of Repair | Ski. Pharmacol. Physiol. | 8 |
| 5 | Szabó, K.; Bolla, B.S.; Erdei, L.; Balogh, F.; Kemény, L. | 2023 | Are the Cutaneous Microbiota a Guardian of the Skin's Physical Barrier? The Intricate Relationship between Skin Microbes and Barrier Integrity | Int. J. Mol. Sci. | 8 |
| 6 | Dąbrowska, A.K.; Spano, F.; Derler, S.; Adlhart, C.; Spencer, N.; Rossi, R. | 2018 | The relationship between skin function, barrier properties, and body-dependent factors | Ski. Res. Technol. | 8 |
| 7 | Rittié, L.; Fisher, G.J. | 2015 | Natural and sun-induced aging of human skin | Cold Spring Harb. Perspect. Med. | 8 |
| 8 | Knox, S.; O'Boyle, N.M. | 2021 | Skin lipids in health and disease: A review | Chem. Phys. Lipids | 8 |
| 9 | Chandan, N.; Rajkumar, J.R.; Shi, V.Y.; Lio, P.A. | 2021 | A new era of moisturizers | J. Cosmet. Dermatol. | 8 |
| 10 | Fluhr, J.W.; Muguet, V.; Christen-Zaech, S. | 2025 | Restoring Skin Hydration and Barrier Function: Mechanistic Insights Into Basic Emollients for Xerosis Cutis | Int. J. Dermatol. | 8 |
| 11 | Lam, M.; Hu, A.; Fleming, P.; Lynde, C.W. | 2022 | The Impact of Acne Treatment on Skin Bacterial Microbiota: A Systematic Review | J. Cutan. Med. Surg. | 8 |
| 12 | Kakuda, L.; Melo, M.O.; Campos, P. | 2022 | Hydrolipidic Characteristics and Clinical Efficacy of a Dermocosmetic Formulation for the Improvement of Homeostasis on Oily Mature Skin | Life | 8 |
| 13 | Gehring, W. | 2004 | Nicotinic acid/niacinamide and the skin | J. Cosmet. Dermatol. | 8 |
| 14 | Boo, Y.C. | 2021 | Mechanistic Basis and Clinical Evidence for the Applications of Nicotinamide (Niacinamide) to Control Skin Aging and Pigmentation | Antioxidants | 8 |
| 15 | Marques, C.; Hadjab, F.; Porcello, A.; Lourenço, K.; et al. | 2024 | Mechanistic Insights into the Multiple Functions of Niacinamide: Therapeutic Implications and Cosmeceutical Applications in Functional Skincare Products | Antioxidants | 8 |
| 1 | Harada et al. | 2001 | Wide use of skin-lightening soap may cause mercury poisoning in Kenya | Sci Total Environ | 9 |
| 2 | Kinabo | 2005 | Comparative analysis of mercury content in human hair and cosmetic products used in Dar es Salaam, Tanzania | Tanzania J Sci | 9 |
| 3 | Murphy et al. | 2009 | Mercury contamination of skin whiteners in Cambodia | Hum Ecol Risk Assess | 9 |
| 4 | Wang and Zhang | 2015 | Mercury content in marketed cosmetics: analytical survey in Shijiazhuang, China | Cutan Ocul Toxicol | 9 |
| 5 | Maneli et al. | 2016 | Combinations of potent topical steroids, mercury and hydroquinone are common in internationally manufactured skin-lightening products: a spectroscopic study | Clin Exp Dermatol | 9 |
| 6 | Gbetoh and Amyot | 2016 | Mercury, hydroquinone and clobetasol propionate in skin lightening products in West Africa and Canada | Environ Res | 9 |
| 7 | Ho et al. | 2017 | Mercury contamination in facial skin lightening creams and its health risks to user | Regul Toxicol Pharmacol | 9 |
| 8 | Selvaraju et al. | 2020 | Determination of selected heavy metal concentrations in unregistered face whitening creams sold in Johor Bahru, Johor, Malaysia by using inductively coupled plasma optical emission spectroscopy and their health risk assessment | Malaysian J Anal Sci | 9 |
| 9 | Abbas et al. | 2020 | Mercury exposure and health problems of the students using skin-lightening cosmetic products in Makassar, South Sulawesi, Indonesia | Cosmetics | 9 |
| 10 | Ashraf et al. | 2021 | Experimental calculations of metals content in skin-whitening creams and theoretical investigation for their biological effect against tyrosinase enzyme | Biol Trace Elem Res | 9 |
| 11 | McRill et al. | 2000 | Mercury toxicity due to use of a cosmetic cream | J Occup Environ Med | 9 |
| 12 | Weldon et al. | 2000 | Mercury poisoning associated with a Mexican beauty cream | West J Med | 9 |
| 13 | Sin and Tsang | 2003 | Large-scale mercury exposure due to a cream cosmetic: community-wide case series | Hong Kong Med J | 9 |
| 14 | McKelvey et al. | 2011 | Population-based inorganic mercury biomonitoring and the identification of skin care products as a source of exposure in New York City | Environ Health Perspect | 9 |
| 15 | Fakour and Esmaili-Sari | 2014 | Occupational and environmental exposure to mercury among Iranian hairdressers | J Occup Health | 9 |
| 16 | Kanwal et al. | 2019 | Speciation and isotopic characterization of mercury detected at high concentration in Pakistani hair samples | Chemosphere | 9 |
| 17 | Ricketts et al. | 2020 | Mercury exposure associated with use of skin lightening products in Jamaica | J Health Pollut | 9 |
| 1 | Zouboulis CC, Makrantonaki E, Nikolakis G | 2019 | When the skin is in the center of interest: an aging issue | Clin Dermatol | 10 |
| 2 | Silva SAME, Michniak‐Kohn B, Leonardi GR | 2017 | An overview about oxidation in clinical practice of skin aging | An Bras Dermatol | 10 |
| 3 | Kligman LH, Duo CH, Kligman AM | 1984 | Topical retinoic acid enhances the repair of ultraviolet damaged dermal connective tissue | Connect Tissue Res | 10 |
| 4 | Shin JW, Kwon SH, Choi JY, Na JI, Huh CH, Choi HR, et al | 2019 | Molecular mechanisms of dermal aging and antiaging approaches | Int J Mol Sci | 10 |
| 5 | Kim HJ, Bogdan NJ, D'Agostaro LJ, Gold LI, Bryce GF | 1992 | Effect of topical retinoic acids on the levels of collagen mRNA during the repair of UVB‐induced dermal damage in the hairless mouse and the possible role of TGF‐beta as a mediator | J Invest Dermatol | 10 |
| 6 | Kang S, Duell EA, Fisher GJ, Datta SC, Wang ZQ, Reddy AP, et al | 1995 | Application of retinol to human skin in vivo induces epidermal hyperplasia and cellular retinoid binding proteins characteristic of retinoic acid but without measurable retinoic acid levels or irritation | J Invest Dermatol | 10 |
| 7 | Bailly J, Crettaz M, Schifflers MH, Marty JP | 1998 | In vitro metabolism by human skin and fibroblasts of retinol, retinal and retinoic acid | Exp Dermatol | 10 |
| 8 | Varani J, Warner RL, Gharaee‐Kermani M, Phan SH, Kang S, Chung JH, et al | 2000 | Vitamin A antagonizes decreased cell growth and elevated collagen‐degrading matrix metalloproteinases and stimulates collagen accumulation in naturally aged human skin | J Invest Dermatol | 10 |
| 9 | Kang S | 2005 | The mechanism of action of topical retinoids | Cutis | 10 |
| 10 | Bellemère G, Stamatas GN, Bruère V, Bertin C, Issachar N, Oddos T | 2009 | Antiaging action of retinol: from molecular to clinical | Skin Pharmacol Physiol | 10 |
| 11 | Mukherjee S, Date A, Patravale V, Korting HC, Roeder A, Weindl G | 2006 | Retinoids in the treatment of skin aging: an overview of clinical efficacy and safety | Clin Interv Aging | 10 |
| 12 | Ortonne JP | 2006 | Retinoid therapy of pigmentary disorders | Dermatol Ther | 10 |
| 13 | Griffiths CE, Kang S, Ellis CN, et al | 1995 | Two concentrations of topical tretinoin (retinoic acid) cause similar improvement of photoaging but different degrees of irritation | Arch Dermatol | 10 |
| 14 | Fluhr JW, Vienne MP, Lauze C, Dupuy P, Gehring W, Gloor M | 1999 | Tolerance profile of retinol, retinaldehyde and retinoic acid under maximized and long‐term clinical conditions | Dermatology | 10 |
| 15 | Rolewski SL | 2003 | Clinical review: topical retinoids | Dermatol Nurs | 10 |
| 16 | Uikey SK, Yadav AS, Sharma AK, et al | 2010 | The botany, chemistry, pharmacological and therapeutic application of Psoralea corylifolia L. ‐ a review | Intern J Phytomed | 10 |
| 17 | Shrestha S, Jadav HR, Bedarkar P, Patgiri BJ, Harisha CR, Chaudhari SY, et al | 2018 | Pharmacognostical evaluation of Psoralea corylifolia Linn. Seed | J Ayurveda Integr Med | 10 |
| 18 | Draelos ZD, Gunt H, Zeichner J, Levy S | 2020 | Clinical evaluation of a nature‐based bakuchiol anti‐aging moisturizer for sensitive skin | J Drugs Dermatol | 10 |
| 19 | Chaudhuri RK, Bojanowski K | 2014 | Bakuchiol: a retinol‐like functional compound revealed by gene expression profiling and clinically proven to have anti‐aging effects | Int J Cosmet Sci | 10 |
| 20 | Dhaliwal S, Rybak I, Ellis SR, Notay M, Trivedi M, Burney W, et al | 2019 | Prospective, randomized, double‐blind assessment of topical bakuchiol and retinol for facial photoageing | Br J Dermatol | 10 |
| 1 | Tsatalis J. P., Rajabi-Estarabadi A., Tosti A. | 2018 | Speaking with Your Hands-The History of the Manicure | JAMA Dermatology | 11 |
| 2 | Draelos Z. D. | 2021 | Nail Cosmetics and Adornment | Dermatologic Clinics | 11 |
| 3 | Schafer L. | 1993 | Nail Care: from Ancient Rites to New Heights | Nails Mag | 11 |
| 5 | Pagano F. C. | 2011 | A Review of Nail Polish: the Industrial Cosmetic | Cosmetics & Toiletries | 11 |
| 6 | Barel A. O., Paye M., Maibach H. I. | 2009 | Handbook of Cosmetic Science and Technology | Informa Healthcare | 11 |
| 7 | Sainio E.-L., Engstr6m K., Henriks-Eckerman M. L., Kanerva L. | 1997 | Allergenic Ingredients in Nail Polishes | Contact Dermatitis | 11 |
| 8 | Arora H., Tosti A. | 2017 | Safety and Efficacy of Nail Products | Cosmetics | 11 |
| 9 | L3pez-L3pez M., Vaz J., Garc1a-Ruiz C. | 2015 | Confocal Raman Spectrocopy for the Analysis of Nail Polish Evidence | Talanta | 11 |
| 10 | Couteau C., Paparis E., Coiffard L. | 2016 | Comparaison de diff1rents vernis 0 ongles en mati2re d'efficacit1 photoprotectrice. 9tude de l'int1r2t de leur recours en soins de support en oncologie | Bulletin du Cancer | 11 |
| 11 | Couteau C., Paparis E., Coiffard L. | 2018 | Evaluation of Different Colorless Nail Polishes Used as Supportive Care in Patients with Cancer in Terms of Photoprotective Efficacy and Water Resistance | J. Clin. Aesthet. Dermatol. | 11 |
| 12 | Jimenez L. N., Mart1nez Narv0ez C. D. V., Xu C., Bacchi S., Sharma V. | 2021 | The Rheologically-Complex Fluid Beauty of Nail Lacquer Formulations | Soft Matter | 11 |
| 13 | Alinat E., Delaunay N., Archer X., Mallet J. M., Gareil P. | 2015 | A New Method for the Determination of the Nitrogen Content of Nitrocellulose Based on the Molar Ratio of Nitrite-To-Nitrate Ions Released after Alkaline Hydrolysis | Journal of Hazardous Materials | 11 |
| 14 | Fiume M. M., Bergfeld W. F., Belsito D. V., et al. | 2016 | Safety Assessment of Nitrocellulose and Collodion as Used in Cosmetics | International Journal of Toxicology | 11 |
| 15 | Gismatulina Y. A., Budaeva V. V., Sakovich G. V. | 2018 | Nitrocellulose Synthesis from Miscanthus Cellulose | Propellants, Explosives, Pyrotechnics | 11 |
| 16 | Santos D., Iop G. D., Bizzi C. A., et al. | 2021 | A Single Step Ultrasound-Assisted Nitrocellulose Synthesis from Microcrystalline Cellulose | Ultrasonics Sonochemistry | 11 |
| 1 | Bom S., Jorge J., Ribeiro H.M., Marto J. | 2019 | A Step Forward on Sustainability in the Cosmetics Industry: A review | J. Clean. Prod. | 12 |
| 2 | Bom S., Ribeiro H.M., Marto J. | 2020 | Sustainability Calculator: A Tool to Assess Sustainability in Cosmetic Products | Sustainability | 12 |
| 3 | Daudt R.M., Back P.I., Cardozo N.S.M., Marczak L.D.F., Külkamp-Guerreiro I.C. | 2015 | Pinhão starch and coat extract as new natural cosmetic ingredients: Topical formulation stability and sensory analysis | Carbohydr. Polym. | 12 |
| 4 | Gonçalves L., Marto J., Pinto P., Neves Â., Simões S., Almeida C. | 2018 | Rice Water: A Traditional Ingredient with Anti-Aging Efficacy | Cosmetics | 12 |
| 5 | Ribeiro H., Marto J., Raposo S., Agapito M., Isaac V., Chiari B.G., Lisboa P.F., Paiva A., Barreiros S., Simões P. | 2013 | From coffee industry waste materials to skin-friendly products with improved skin fat levels | Eur. J. Lipid Sci. Technol. | 12 |
| 6 | Ribeiro H.M., Allegro M., Marto J., Pedras B., Oliveira N.G., Paiva A., Barreiros S., Gonçalves L.M., Simões P. | 2018 | Converting spent coffee grounds into bioactive extracts with potential skin antiaging and lightening effects | ACS Sustain. Chem. Eng. | 12 |
| 7 | Fresneda M., Trujillo-Cayado L.A., García M.C., Alfaro-Rodriguez M.C., Muñoz J. | 2020 | Production of more sustainable emulsions formulated with eco-friendly materials | J. Clean. Prod. | 12 |
| 8 | Costa G.M.D., de Alves G.A.D., Maia Campos P.M.B.G. | 2019 | Application of design of experiments in the development of cosmetic formulation based on natural ingredients | Int. J. Phytocosmet. Nat. Ingred. | 12 |
| 9 | Carriço C., Ribeiro H.M., Marto J. | 2018 | Converting cork by-products to ecofriendly cork bioactive ingredients: Novel pharmaceutical and cosmetics applications | Ind. Crops Prod. | 12 |
| 10 | Marto J., Pinto P., Fitas M., Gonçalves L.M., Almeida A.J., Ribeiro H.M. | 2018 | Safety assessment of starch-based personal care products: Nanocapsules and pickering emulsions | Toxicol. Appl. Pharmacol. | 12 |
| 1 | Hansen T, Risborg MS, Steen CD | 2012 | Understanding consumer purchase of free-of cosmetics: A value-driven TRA approach | J Consum Behav | 13 |
| 2 | Lysdal SH, Johansen JD | 2009 | Fragrance contact allergic patients: strategies for use of cosmetic products and perceived impact on life situation | Contact Dermatitis | 13 |
| 3 | Noiesen E, Munk MD, Larsen K | 2007 | Difficulties in avoiding exposure to allergens in cosmetics | Contact Dermatitis | 13 |
| 4 | Klaschka U, Rother HA | 2013 | “Read this and be safe!” Comparison of regulatory processes for communicating risks of personal care products to European and South African consumers | Environ Sci Eur | 13 |
| 5 | Klaschka U | 2012 | Dangerous Cosmetics—criteria for classification, labelling and packaging (EC 1272/2008) applied to Personal care products | Env Sci Europe | 13 |
| 6 | Burnett C, Fiume M | 2011 | Final report on plant-derived fatty acid oils as used in cosmetics | Cosmet Ingred Rev | 13 |
| 7 | Klaschka U | 2015 | Naturally toxic: natural substances used in personal care products | Environ Sci Eur | 13 |
| 8 | Buchbauer G | 2004 | Über biologische Wirkungen von Duftstoffen und ätherischen Ölen | Med Wochenschr | 13 |
| 9 | Lahlou M | 2004 | Essential Oils and fragrance compounds: bioactivity and mechanisms of action | Flavour Fragrance J | 13 |
| 10 | Henley DV, Lipson N, Korach KS | 2007 | Prepubertal gynecomastia linked to lavender and tea tree oils | N Engl J Med | 13 |
| 11 | Rudén C, Hansson SO | 2010 | Registration, Evaluation, and Authorization of Chemicals (REACH) is but the first step-how far will it take us? Six further steps to improve the European chemicals legislation | Environ Health Perspect | 13 |
| 12 | Hutter HP, Wallner P, Moshammer H | 2009 | Synthetic musks in blood of healthy young adults: relationship to cosmetics use | Sci Total Environ | 13 |
| 13 | Lake BG | 1999 | Coumarin metabolism, toxicity and carcinogenicity: relevance for human risk assessment | Food Chem Toxicol | 13 |
| 14 | Walther C, Huber B, Neumann L, Raddatz H | 2015 | Chemie für die Schönheit - aber sicher! | Nachr aus der Chem | 13 |
| 15 | Dodson RE, Nishioka M, Standley LJ | 2012 | Endocrine disruptors and asthma-associated chemicals in consumer products | Environ Health Perspect | 13 |
| 16 | Wieck S | 2015 | The necessity of disinfected toilet brushes - information policy of companies on disinfectants in private homes | Environ Sci Eur | 13 |
| 17 | Koniecki D, Wang R, Moody RP | 2011 | Phthalates in cosmetic and personal care products: concentrations and possible dermal exposure | Environ Res | 13 |
| 18 | Yazar K, Johnsson S, Lind ML | 2010 | Preservatives and fragrances in selected consumer-available cosmetics and detergents | Contact Dermatitis | 13 |
| 19 | Rastogi SC | 2000 | Analytical control of preservative labelling on skin creams | Contact Dermatitis | 13 |
| 20 | Schnuch A, Lessmann H, Geier J | 2011 | Contact allergy to preservatives. Analysis of IVDK data 1996–2009 | Br J Dermatol | 13 |
| 21 | Ortiz KJ, Yiannias JA | 2004 | Contact dermatitis to cosmetics, fragrances, and botanicals | Dermatol Ther | 13 |
| 22 | Rastogi SC, Johansen JD, Frosch P | 1998 | Deodorants on the European market: quantitative chemical analysis of 21 fragrances | Contact Dermatitis | 13 |
| 23 | Rastogi SC, Johansen JD, Bossi R | 2007 | Selected important fragrance sensitizers in perfumes—current exposures | Contact Dermatitis | 13 |
| 24 | Klaschka U | 2010 | Risk management by labelling 26 fragrances? Evaluation of Article 10 (1) of the seventh Amendment (Guideline 2003/15/EC) of the Cosmetic Directive | Int J Hyg Environ Health | 13 |
| 25 | Schnuch A, Uter W, Geier J | 2007 | Sensitization to 26 fragrances to be labelled according to current European regulation | Contact Dermatitis | 13 |
| 26 | Karlberg AT, Shao LP, Nilsson U | 1994 | Hydroperoxides in oxidized d-limonene identified as potent contact allergens | Arch Dermatol Res | 13 |
| 27 | Matura M, Sköld M, Börje A | 2005 | Selected oxidized fragrance terpenes are common contact allergens | Contact Dermatitis | 13 |
| 28 | Sköld M, Hagvall L, Karlberg AT | 2008 | Autoxidation of linalyl acetate, the main component of lavender oil, creates potent contact allergens | Contact Dermatitis | 13 |
| 29 | Uter W, Yazar K, Kratz EM | 2013 | Coupled exposure to ingredients of cosmetic products: I. Fragrances | Contact Dermatitis | 13 |
| 30 | Rastogi SC, Johansen JD, Menné T | 1996 | Natural ingredients based cosmetics. Content of selected fragrance sensitizers | Contact Dermatitis | 13 |
| 31 | Steinemann AC, MacGregor IC, Gordon SM | 2010 | Fragranced consumer products: Chemicals emitted, ingredients unlisted | Environ Impact Asses Rev | 13 |
| 32 | Klaschka U | 2012 | Contact allergens for armpits - allergenic fragrances specified on deodorants | Int J Hyg Environ Health | 13 |
| 33 | Hammerschmidt T, Marx R | 2014 | REACH and occupational health and safety | Environ Sci Eur | 13 |
| 1 | Shoulders M. D., Raines R. T. | 2009 | Collagen structure and stability | Annual Review of Biochemistry | 14 |
| 2 | Kadler K. E., Baldock C., Bella J., Boot-Handford R. P. | 2007 | Collagens at a glance | Journal of Cell Science | 14 |
| 3 | Buehler M. J. | 2006 | Nature designs tough collagen: explaining the nanostructure of collagen fibrils | Proceedings of the National Academy of Sciences of the United States of America | 14 |
| 4 | El-Domyati M., Attia S., Saleh F., et al. | 2002 | Intrinsic aging vs. photoaging: a comparative histopathological, immunohistochemical, and ultrastructural study of skin | Experimental Dermatology | 14 |
| 5 | Russel-Goldman E., Murphy G. F. | 2020 | The pathobiology of skin aging. New insights into an old dilemma | American Journal Of Pathology | 14 |
| 6 | Koyama Y. | 2016 | Effects of collagen ingestion and their biological significance | Journal of Nutrition & Food Sciences | 14 |
| 7 | Yazaki M., Ito Y., Yamada M., et al. | 2017 | Oral ingestion of collagen hydrolysate leads to the transportation of highly concentrated gly-pro-hyp and its hydrolyzed form of pro-hyp into the bloodstream and skin | Journal of Agricultural and Food Chemistry | 14 |
| 8 | Zhao X., Zhang X., Liu D. | 2021 | Collagen peptides and the related synthetic peptides: a review on improving skin health | Journal of Functional Foods | 14 |
| 9 | Rappu P., Salo A. M., Myllyharju J., Heino J. | 2019 | Role of prolyl hydroxylation in the molecular interactions of collagens | Essays in Biochemistry | 14 |
| 10 | Yamauchi M., Sricholpech M. | 2012 | Lysine post-translational modifications of collagen | Essays in Biochemistry | 14 |
| 11 | Reilly D. M., Lozano J. | 2021 | Skin collagen through the lifestages: importance for skin health and beauty | Plast Aesthet Res | 14 |
| 12 | Choi F. D., Sung C. T., Juhasz M. L., Mesinkovsk N. A. | 2019 | Oral collagen supplementation: a systematic review of dermatological applications | Journal of Drugs in Dermatology | 14 |
| 13 | Al-Atif H. | 2022 | Collagen supplements for aging and wrinkles: a paradigm shift in the fields of dermatology and cosmetics | Dermatology Practical and Conceptual | 14 |
| 14 | Pu S.-Y., Huang Y.-L., Pu C.-M., et al. | 2023 | Effects of oral collagen for skin anti-aging: a systematic review and meta-analysis | Nutrients | 14 |
| 15 | Evans M., Lewis E. D., Zakaria N., Pelipyagina T., Guthrie N. | 2021 | A randomized, triple-blind, placebo controlled, parallel study to evaluate the efficacy of a freshwater marine collagen on skin wrinkles and elasticity | Journal of Cosmetic Dermatology | 14 |
| 16 | Samadi A., Movaffaghi M., Kazemi F., Yazdanparast T., Ahmad Nasrollahi S., Firooz A. | 2023 | Tolerability and efficacy assessment of an oral collagen supplement for the improvement of biophysical and ultrasonographic parameters of skin in middle eastern consumers | Journal of Cosmetic Dermatology | 14 |
| 17 | Asserin J., Lati E., Shioya T., Prawitt J. | 2015 | The effect of oral collagen peptide supplementation on skin moisture and the dermal collagen network: evidence from an ex vivo model and randomized, placebo-controlled clinical trials | Journal of Cosmetic Dermatology | 14 |
| 3 | Kwapniewski R., Kozaczka S., Hauser R., Silva M. J., Calafat A. M., Duty S. M. | 2008 | Occupational Exposure to Dibutyl Phthalate among Manicurists | J. Occup. Environ. Med. | 15 |
| 4 | Schlossman M. L. | 1980 | Modern Nail Enamel Technology | J. Soc. Cosmet. Chem. | 15 |
| 5 | Foster P. M. D., Thomas L. V., Cook M. W., Gangolli S. D. | 1980 | Study of the Testicular Effects and Changes in Zinc Excretion Produced by Some N-Alkyl Phthalates in the Rat | Toxicol. Appl. Pharmacol. | 15 |
| 6 | Heindel J. J., Powell C. J. | 1992 | Phthalate Ester Effects on Rat Sertoli Cell Function in Vitro: Effects of Phthalate Side Chain and Age of Animal | Toxicol. Appl. Pharmacol. | 15 |
| 7 | Shiota K., Chou M. J., Nishimura H. | 1980 | Embryotoxic Effects of Di-2-Ethylhexyl Phthalate (DEHP) and Di-N-Butyl Phthalate (DBP) in Mice | Environ. Res. | 15 |
| 8 | Blount B. C., Silva M. J., Caudill S. P., Needham L. L., Pirkle J. L., Sampson E. J., Lucier G. W., Jackson R. J., Brock J. W. | 2000 | Levels of Seven Urinary Phthalate Metabolites in a Human Reference Population | Environ. Health Perspect. | 15 |
| 9 | Kohn M. C., Parham F., Masten S. A., Portier C. J., Shelby M. D., Brock J. W., Needham L. L. | 2000 | Human Exposure Estimates for Phthalates | Environ. Health Perspect. | 15 |
| 10 | Breskey J. D. | 2013 | California Again Leading the Way: Cosmetics Safety and Worker Health | Calif. J. Heal. Promot. | 15 |
| 11 | Ferguson K. K., McElrath T. F., Meeker J. D. | 2014 | Environmental Phthalate Exposure and Preterm Birth | JAMA Pediatr. | 15 |
| 12 | Hauser R., Meeker J. D., Duty S., Silva M. J., Calafat A. M. | 2006 | Altered Semen Quality in Relation to Urinary Concentrations of Phthalate Monoester and Oxidative Metabolites | Epidemiology | 15 |
| 13 | Huang P., Kuo P., Guo Y., Liao P., Lee C. | 2007 | Associations between Urinary Phthalate Monoesters and Thyroid Hormones in Pregnant Women | Hum. Reprod. | 15 |
| 14 | Schug T. T., Janesick A., Blumberg B., Heindel J. J. | 2011 | Endocrine Disrupting Chemicals and Disease Susceptibility | J. Steroid Biochem. Mol. Biol. | 15 |
| 15 | Mendelsohn E., Hagopian A., Hoffman K., Butt C. M., Lorenzo A., Congleton J., Webster T. F., Stapleton H. M. | 2016 | Nail Polish as a Source of Exposure to Triphenyl Phosphate | Environ. Int. | 15 |
| 16 | Preston E. V., McClean M. D., Claus Henn B., Stapleton H. M., Braverman L. E., Pearce E. N., Makey C. M., Webster T. F. | 2017 | Associations between Urinary Diphenyl Phosphate and Thyroid Function | Environ. Int. | 15 |
| 17 | John E. M., Savitz D. A., Shy C. M. | 1994 | Spontaneous Abortions among Cosmetologists | Epidemiology | 15 |
| 18 | Quach T., Von Behren J., Goldberg D., Layefsky M., Reynolds P. | 2015 | Adverse Birth Outcomes and Maternal Complications in Licensed Cosmetologists and Manicurists in California | Int. Arch. Occup. Environ. Health | 15 |
| 19 | Rasmussen L. M., Sen N., Vera J. C., Liu X., Craig Z. R. | 2017 | Effects of in Vitro Exposure to Dibutyl Phthalate, Mono-Butyl Phthalate, and Acetyl Tributyl Citrate on Ovarian Antral Follicle Growth and Viability | Biol. Reprod. | 15 |
| 20 | Young Anna S., Allen Joseph G., Kim Un-Jung, Seller Stephanie, Webster Thomas F., Kannan Kurunthachalam, Ceballos Diana M. | 2018 | Phthalate and Organophosphate Plasticizers in Nail Polish: Evaluation of Labels and Ingredients | Environ Sci Technol | 15 |
| 1 | Schubert H, Armbruster H | 1992 | Principles of formation and stability of emulsions | Int Chem Eng 32: 14 | 16 |
| 2 | Aulton ME | 1996 | Pharmaceutics the science of dosage form design | Charchil Livingston, London, United Kingdom, pp. 282- 299 | 16 |
| 4 | Garti, N, Bisperink C | 1998 | Double emulsions: progress and applications | Current Opinion in Colloid & Interface Science 3(6): 657-667 | 16 |
| 5 | Klahn JK, Janssen JJM, Vaessen GEJ, R de Swart, Agterof WGM | 2002 | On the escape process during phase inversion of an emulsion | Colloid Surf. A: Physicochem Eng Aspects 210: 167 | 16 |
| 6 | Mugue V, Seiller M, Barratt G, Clause D, Marty JP, et al. | 1999 | W/O/W multiple emulsions submitted to a linear shear flow: orrelation between fragmentation and release | J Colloid Interface Sci 218(1): 335-33 | 16 |
| 7 | Florence AT, Whitehill D | 1981 | Some features of breakdown in water in oil-in-water multiple emulsions | J Colloid Interface Sci 79(1): 243-256 | 16 |
| 15 | Lobato-Calleros C, Rodriguez E, Sandoval-Castilla O, Vernon-Carter EJ, Alvarez-Ramirez J | 2006 | Reduced fat white fresh cheese-like products obtained fromW1/O/W2 multiple emulsions: viscoelastic and high-resolution image analyses | Food Res Int 39(6): 678-685 | 16 |
| 16 | Florence AT, Whitehill D | 1982 | The formulation and stability of multiple emulsions | Int J Pharm 11(4): 277-308 | 16 |
| 17 | Garti N, Bisperink C | 1998 | Double emulsions: progress and applications | Curr Opin Colloid Interface Sci 3: 657- 667 | 16 |
| 18 | Dickinson E, McClements DJ | 1996 | Water–in-oil-in water multiple emulsions. Advances in food colloids | London: Blackie Academic & Professional | 16 |
| 19 | Garti N, Benichou A | 2004 | Recent developments in double emulsions for food applications | Food emulsions. New York, USA, p: 353-412 | 16 |
| 20 | Muschiolik G, Bunjes H | 2007 | Multiple Emulsion | Hamburg: Behr's Verlag | 16 |
| 21 | Fie Y, Liu S, Xu J, Lan Q, Wei F, et al. | 2006 | Pickering emulsion stabilized solely by layered double hydroxides particles: The effect of salt on emulsion formation stability | J Colloid Interface Sci 302(1): 159-169 | 16 |
| 22 | Christopher AL, Dawn B | 2008 | Pharmaceutical compounding and dispensing | RPS, Cambridge, UK, pp. 65-70 | 16 |
| 23 | Herbert AL, Martin MR, Gilbert SB | 1996 | Pharmaceutical emulsions and microemulsions, pharmaceutical dosage forms disperse systems | Marcel Dekker, INC, New York and Basel, USA, pp. 67-95 | 16 |
| 24 | Nita A, Rouzhou H, Richard AW | 2009 | Performance of a rotating membrane emulsifier for production of coarse droplets | J Membrane Sci 326(1): 9-18 | 16 |
| 25 | Carter SJ | 2005 | Tutorial Pharmacy | CBS Publishers, Delhi, India, pp. 65-66 | 16 |
| 26 | Alfred M, Pilar B, Chun AHC | 1993 | Physical pharmacy | Lea and febiger, New York, USA, pp. 487-490 | 16 |
| 27 | Gilberte MM, Franscoise N | 2002 | Emulsions in health care applications An Overview | J Disp Sci Technol 23(1-3): 419-439 | 16 |
| 28 | Nasirideen S, Kas HS, Oner F, Alpar R, Hincal AA | 1998 | Naproxen incorporated lipid emulsions. I. Formulation and stability studies | J Clinical Pharma Therapeut 23: 57-65 | 16 |
| 29 | Myung G | 2000 | Rapid evaluation of water in oil emulsion stability by turbidity ratio measurements | J Colloid Interface Sci 230(1): 213-215 | 16 |
| 30 | Gilbert SB, Christopher RT | 2002 | Modern pharmaceutics | CRC Press, London, UK, pp. 265-268 | 16 |
| 32 | Albers W, Overbeek JTG | 1959 | Stability of emulsions of water in oil, the correlation between electrokinetic potential and stability | J Colloid Sci 14(5): 501-509 | 16 |
| 33 | Ashok KG | 2005 | Introduction to pharmaceutic-1 | CBS Publishers, Delhi, India, pp. 116-120 | 16 |
| 34 | Rajan B Mistry, Nirav S Sheth | 2011 | A review: self-emulsifying drug delivery system | Int J Pharm Pharm Sci 3(Suppl 2): 2328 | 16 |
| 35 | Kirsty E, Allen Eric Dickinson, Brent, Murray | 2006 | Acidified sodium caseinate emulsion foams containing liquid fat: A comparison with whipped cream, LWT | Food Sci & Technol 39(3): 225-234 | 16 |
| 36 | Deborah D Roberts, Philippe Pollien, Brigitte Watzke | 2003 | Experimental and modeling studies showing the effect of lipid type and level on flavor release from milk-based liquid emulsions | J Agric Food Chem 51(1): 189-195 | 16 |
| 37 | Ignác Capek | 1999 | Micro emulsion polymerization of styrene in the presence of anionic emulsifier | Advances in Colloid & Interface Sci 82(1-3): 253-273 | 16 |
| 38 | Shah NH, Carvajal MT | 1994 | Self-emulsifying drug delivery systems (SEDDS) with polyglycolyzed glycerides for improving in vitro dissolution and oral absorption of lipophilic drugs | International Journal of Pharmaceutics 106(1): 15-23 | 16 |
| 39 | Yu-Chung Chang, Chih-Cheng Chou, Jiang-Jen Lin | 2005 | Emulsion intercalation of smectite clays with comb-branched copolymers consisting of multiple quaternary amine salts and a poly (styrene-butadiene-styrene) Backbone | Langmuir 21(15): 7023-7028 | 16 |
| 40 | William N Maclay | 1956 | Factors affecting the solubility of nonionic emulsifiers | J Colloid Sci 11(3): 272-285 | 16 |
| 41 | SnezanaSavic, Christian Weber, Slobodanka Tamburic, MiroslavSavic, Christel Müller-Goymann | 2009 | Topical vehicles based on natural surfactant/fatty alcohols mixed emulsifier: The influence of two polyols on the colloidal structure and in vitro/in vivo skin performance | J Pharmaceutical Sci 98(6): 2073-2090 | 16 |
| 42 | Halina Szela G, Wllodzimierz Zwierzykowski | 1998 | Esterification kinetics of glycerol with fatty acids in the presence of sodium and potassium soaps | European J Lipid Sci & Technol 100(7): 302-307 | 16 |
| 43 | Kwak HS, Ihm MR, Ahn J | 2001 | Microencapsulation of β-Galactosidase with Fatty Acid Esters | J Dairy Sci 84(7): 1576-1582 | 16 |
| 44 | Adam, Macierzanka, HalinaSzelag | 2006 | Microstructural behavior of water-in-oil emulsions stabilized by fatty acid esters of propylene glycol and zinc fatty acid salts | Colloids and Surfaces A: Physicochemical and Engineering Aspects 281(1-3): 125-137 | 16 |
| 45 | Weihong Qiao, Zhibo Zheng, Huan Peng | 2011 | Synthesis of switchable amphipathic molecules triggered by CO 2 through carbonyl-amine condensation | European J Lipid Sci & Technol 113(7): 841-847 | 16 |
| 46 | Dickinson E | 1993 | Towards more natural emulsifiers | Trends Food Sci & Technol 4(10): 330-334 | 16 |
| 47 | Reiner SJ, Reineccius GA, Peppard TL | 2010 | A comparison of the stability of beverage cloud emulsions formulated with different Gum Acacia- and Starch-Based Emulsifiers | J Food Sci 75(5): E236-E246 | 16 |
| 48 | Buffo RA, Reineccius GA, Oehlert GW | 2001 | Factors affecting the emulsifying and rheological properties of gum acacia in beverage emulsions | Food Hydrocolloids 15(1): 53-66 | 16 |
| 49 | Yeun Suk Gu, A Eric Decker, D Julian McClements | 2005 | Production and Characterization of Oil-in-Water Emulsions Containing Droplets Stabilized by Multilayer Membranes Consisting of beta-Lactoglobulin, iota-Carrageenan and Gelatin | Langmuir 21(13): 5752-5760 | 16 |
| 50 | Nickolaos G Diftis, Themis A Pirzas, Vassilios D Kiosseoglou | 2005 | Emulsifying properties of gelatin conjugated to pectin under alkaline conditions | J Sci Food Agric 85(5): 804-808 | 16 |
| 51 | Gopal Krishna, George C Wood, Bhogi B Sheth | 1998 | Improving Emulsification Efficacy of Lecithin by Formulation Design I: Effect of adding a secondary surfactant | PDA J Pharmaceutical Sci & Technol 52(6): 331-336 | 16 |
| 52 | Beena Ashok, LiseArleth, Rex P Hjelm, Israel Rubinstein, Hayat Önyüksel | 2004 | In-vitro characterization of PEGylated phospholipid micelles for improved drug solubilization: Effects of PEG chain length and PC incorporation | J Pharmaceutical Sci 93(10): 2476-2487 | 16 |
| 53 | Gopal Krishna, Bhogi, B Sheth | 1999 | A Novel Self Emulsifying Parenteral Drug Delivery System | PDA J Pharmaceutical Sci & Technol 53(4): 168-176 | 16 |
| 54 | Juliane Floury, Anne Desrumaux, Monique AV Axelos, Jack Legrand | 2003 | Effect of high-pressure homogenisation on methylcellulose as food emulsifier | J Food Engg 58(3): 227-238 | 16 |
| 55 | Bono A, Ying PH, Yan FY, Muei CL, Sarbatly R, et al. | 2009 | Synthesis and Characterization of Carboxymethyl Cellulose from Palm Kernel Cake | Adv Nat.& Appl Scie 3(1): 5-11 | 16 |
| 56 | Jain Ankur, Gautam Surya, P Gupta, Yashwant Khambete, Hemant Jain S | 2010 | Development and characterization of ketoconazole emulgel for topical drug delivery | Der Pharmacia Sinica 1(3): 221-231 | 16 |
| 57 | Bernard P Binks, John H Clint, Catherine P Whitby | 2005 | Rheological Behavior of Water-in-Oil Emulsions Stabilized by Hydrophobic Bentonite Particles | Langmuir 21(12): 5307-5316 | 16 |
| 58 | Abendand S, Lagaly G | 2001 | Bentonite and double hydroxides as emulsifying agents | Clay Minerals 36(4): 557-570 | 16 |
| 59 | Kôzô Shinoda, Hiromichi Sagitani | 1978 | Emulsifier selection in water/oil type emulsions by the hydrophile-lipophile balance-temperature system | J Colloid & Interface Sci 64(1): 68-71 | 16 |
| 60 | Singh Vikramjeet Kataria, Mahesh Kumar, Bilandi Ajay, Sachdeva Vishal | 2012 | Recent advances in pharmaceutical emulsion technology | J Pharmacy Res Bio Med | 16 |
| 1 | Zhai H, Huang L, Chen Z, Su Z, Yuan K, Liang G, Pan Y. | 2017 | Chip-based molecularly imprinted monolithic capillary array columns coated GO/SiO₂ for selective extraction and sensitive determination of Rhodamine B in chili powder | Food Chem. | 17 |
| 2 | European Food Safety Authority (EFSA) | 2005 | Opinion of the scientific panel on food additives, flavourings, processing aids and materials in contact with food on a request from the commission to review the toxicology of a number of dyes illegally present in food in the EU | EFSA J. | 17 |
| 3 | Safitria S, Indrawan IYA, Winarsih S. | 2015 | Rhodamine B induces oxidative stress and cervical epithelial cell proliferation in the uterus | Toxicol Rep. | 17 |
| 4 | Wainwright M. | 2001 | Dyes in biology: From cell tracking to cancer treatment | Biotech Histochem. | 17 |
| 5 | Kelner MJ. | 1985 | Rhodamine B ingestion as a cause of fluorescent red urine | West J Med. | 17 |
| 6 | Sweatman TW, Seshadri R, Israel M. | 1990 | Metabolism and elimination of rhodamine 123 in the rat | Cancer Chemother Pharmacol. | 17 |
| 7 | Bao X, Lu S, Liow JS, Morse CL, Anderson K, Zoghbi SS, Innis RB, Pike VK. | 2012 | 11CRhodamine-123: Synthesis and biodistribution in rodents | Nucl Med Biol. | 17 |
| 8 | Mizuno N, Fujiwara A, Morita E. | 1981 | Effect of dyes on the photodecomposition of pyridoxine and pyridoxamine | J Pharm Pharmacol. | 17 |
| 9 | Wang H, Lu L, Zhu S, et al. | 2006 | The phototoxicity of xanthene derivatives against E. coli, Staphylococcus aureus, and Saccharomyces cerevisiae | Curr Microbiol. | 17 |
| 10 | Shea CR, Chen N, Wimberly J, et al. | 1989 | Rhodamine dyes as potential agents for photochemotherapy of cancer in human bladder carcinoma cells | Cancer Res. | 17 |
| 11 | Koenig BW, Jori G, Scherz A, Spikes JD. | 1995 | Phototoxicity of rhodamine dyes on mammalian cells | Photochem Photobiol. | 17 |
| 12 | Li L, Diers JR, Cotton TM, Lindsey JS. | 2009 | Enhanced singlet oxygen generation from a porphyrin–rhodamine B dyad by two-photon excitation through resonance energy transfer | J Phys Chem B. | 17 |
| 13 | Webb JM, Hansen WH. | 1961 | Studies of the metabolism of rhodamine B | Toxicol Appl Pharmacol. | 17 |
| 14 | Webb JM, Hansen WH, Desmond A, Fitzhugh OG. | 1961 | Biochemical and toxicologic studies of rhodamine B and 3,6-diaminofluoran | Toxicol Appl Pharmacol. | 17 |
| 15 | Mahdi C, Pratama CA, Pratiwi H. | 2019 | Preventive study of garlic extract water (Allium sativum) toward SGPT, SGOT, and the description of liver histopathology on rat (Rattus norvegicus) exposed to Rhodamine-B | IOP Conf Ser Mater Sci Eng. | 17 |
| 16 | Zhou J, Liu Y. | 2022 | Mitochondria as the target of hepatotoxicity and drug-induced liver injury | Int J Mol Sci. | 17 |
| 17 | Cichoż-Lach H, Michalak A. | 2022 | Role of oxidative stress in liver disorders | Biomedicines. | 17 |
| 18 | Owumi SE, Otunla MT, Elerewe OO, Arunsi UO. | 2023 | Co-exposure to aflatoxin B1 and therapeutic Coartem worsens hepatic and renal function through enhanced oxido-inflammatory responses and apoptosis in rats | Toxicon. | 17 |
| 19 | Khan YA, Khan SA. | 2023 | Nephrotoxicity: its mechanism and biomarkers: a systematic review | Review Article IP Journal of Urology, Nephrology & Hepatology | 17 |
| 20 | Kumar P, Singh R. | 2022 | Role and significance of renal biomarkers in the early detection of nephrotoxicity | J Nephrol Res. | 17 |
| 21 | Zhang Y, Wang L. | 2024 | Hypoxia, oxidative stress, and the interplay of HIFs and NRF2 in tumor progression | Front Oncol. | 17 |
| 22 | Chen H, Li X. | 2017 | GLUT1 overexpression in human cancers: implications for prognosis and therapy | Oncotarget. | 17 |
| 23 | Lee JH, Park SH. | 2022 | HIF-1ͱ: a valid therapeutic target for tumor therapy | Cancer Res Treat. | 17 |
| 24 | Kartikasari LR, Wibowo A, Putri DN. | 2021 | Histopathological changes in rat kidneys following Rhodamine B exposure | Toxicol Res J. | 17 |
| 25 | Black LM, Lever JM, Agarwal A. | 2019 | Renal inflammation and fibrosis: a double-edged sword | J Histochem Cytochem. | 17 |
| 26 | Sulistina DR, Martini S. | 2020 | The effect of rhodamine B on the cerebellum and brainstem tissue of Rattus norvegicus | J Public Health Res. | 17 |
| 27 | Sulistina DR, Wiyasa IWA, Purnomo W. | 2019 | Rhodamin B increases hippocampus cell apoptosis in Rattus norvegicus oxidative stress related to Parkinson, Alzheimer, cancer, hyperactive, anterograde amnesia diseases | J Public Health Afr. | 17 |
| 28 | Bello M, et al. | 2023 | Rhodamine B, an organic environmental pollutant, induces reproductive toxicity in rats and highlights the need for further investigations into its molecular pathways | Environ Toxicol Pharmacol. | 17 |
| 29 | Maryanti S, Suciati S, Wahyuni ES, Santoso S, Wiyasa A. | 2014 | Rhodamine B triggers ovarian toxicity through oxidative stress, decreases in the number of follicles, 17Ͳ-estradiol level, and thickness of endometrium | Cukurova Med J. | 17 |
| 30 | Johnson BJ, et al. | 2017 | Use of rhodamine B to mark the body and seminal fluid of male Aedes aegypti for mark-release-recapture experiments and estimating efficacy of sterile male releases | PLoS Negl Trop Dis. | 17 |
| 31 | Priya PS, et al. | 2024 | Rhodamine B, an organic environmental pollutant, induces reproductive toxicity in parental and teratogenicity in F1 generation in vivo | Comp Biochem Physiol C Toxicol Pharmacol. | 17 |
| 32 | Dutta S, et al. | 2023 | Reproductive toxicity of combined effects of endocrine disruptors on human reproduction | Front Cell Dev Biol. | 17 |
| 33 | Etyorini D, Rianto E, Laksmi PW. | 2017 | Rhodamine B induces oxidative stress and cervical epithelial cell proliferation in the uterus of mice | J Toxicol Environ Health A. | 17 |
| 34 | Ruff MD, Stout LE, Stout KD, Nelson JF. | 1989 | Comparative developmental toxicity of cationic and neutral rhodamines in mice | Teratology. | 17 |
| 35 | Roberts AL, Rees MH, Klebe S, Fletcher JM, Byers S. | 2010 | Transgenerational exposure to low levels of Rhodamine B does not adversely affect litter size or liver function in murine mucopolysaccharidosis type IIIA | Mol Genet Metab. | 17 |
| 36 | Kaji T, Kawashima Y, Yamamoto C, Sakamoto M, Kurashige Y. | 1991 | Inhibitory effect of Rhodamine B on the proliferation of cultured human lip fibroblasts | Toxicol Appl Pharmacol. | 17 |
| 37 | Caserta D, et al. | 2011 | Endocrine disrupting chemicals and reproductive disorders in women | Eur J Obstet Gynecol Reprod Biol. | 17 |
| 38 | Diamanti-Kandarakis E, Bourguignon JP, et al. | 2009 | Endocrine-disrupting chemicals: An Endocrine Society scientific statement | Endoc Rev. | 17 |
| 39 | International Agency for Research on Cancer (IARC) | 1978 | Rhodamine B. In: IARC monographs on the evaluation of carcinogenic risk of chemicals to man. Vol. 16 | Lyon: IARC | 17 |
| 40 | Cheng YY, Tsai TH. | 2017 | Pharmacokinetics and biodistribution of the illegal food colorant rhodamine B in rats | J Agric Food Chem. | 17 |
| 41 | Elliott GS, Mason RW, Edwards IR. | 1990 | Studies on the pharmacokinetics and mutagenic potential of rhodamine B | J Toxicol Clin Toxicol. | 17 |
| 42 | Nestmann ER, Bryant DW, Carr CJ, Sherwood RA, Stoltz S, Lee EG. | 1979 | Mutagenic activity of rhodamine dyes and their impurities as detected by mutation induction in Salmonella and DNA damage in Chinese hamster ovary cells | Cancer Res. | 17 |
| 43 | Tan D, Yu Z, Wu Y, Luo W, Li H, Xu B, et al. | 2014 | Rhodamine B induces long nucleoplasmic bridges and other nuclear anomalies in Allium cepa root tip cells | Environ Sci Pollut Res Int. | 17 |
| 44 | Douglas GR, Nestmann ER, Betts L, Mueller C, Lee EGH. | 1983 | Comparative mammalian in vitro and in vivo studies on the mutagenic activity of rhodamine WT | Mutat Res. | 17 |
| 45 | Tripathy NK, Khuda-Bukhsh AR, Chakraborty S. | 1995 | Genotoxicity testing of two red dyes in the somatic and germ line cells of Drosophila | Food Chem Toxicol. | 17 |
| 46 | Kornbrust D, Barfknecht T. | 1985 | Testing of 24 food, drug, cosmetic, and fabric dyes in the in vitro and the in vivo/in vitro rat hepatocyte primary culture/DNA repair assays | Environ Mutagen. | 17 |
| 47 | Kuznetsova EA, Sirota NP. | 2024 | Rotenone, Rhodamine 123 and Janus Green induce damage to nuclear DNA in ascites tumor cells from mice | Biofizika. | 17 |
| 48 | Huntoon LE, Whiteside JR, Meyer KR, Gibbons HL, Lippy EC, Shupack JL. | 1988 | Acute exposure to Rhodamine B aerosol in a maintenance shop | J Toxicol Clin Toxicol. | 17 |
| 49 | Malo JL, Cartier A, Desjardins A, Evans S, Galiner J, L’Archevêque J, et al. | 1993 | Asthma, rhinitis, and dermatitis in workers exposed to reactive textile dyes | Occup Environ Med. | 17 |
| 50 | Park J, Nahm DH, Suh CH, Kim HY, Cho SH, Park HS. | 1990 | Clinical and immunologic evaluations of reactive dye exposed workers | J Allergy Clin Immunol. | 17 |
| 51 | Nithish G, Kumar A, Sharma R, Gupta P, Singh S. | 2025 | A review article on the sweet scandal: The truth behind rhodamine B | Glob J Health Sci Res. | 17 |
| 52 | Dire DJ, Wilkinson JA. | 1987 | Acute exposure to rhodamine B | J Toxicol Clin Toxicol. | 17 |
| 1 | Abdel-Salam FS, Mahmoud AA, Ammar HO, Elkheshen SA | 2017 | Nanostructured lipid carriers as semisolid topical delivery formulations for diflucortolone valerate | J Liposome Res | 18 |
| 2 | Afaq F, Zaid MA, Khan N, et al. | 2009 | Protective effect of pomegranate-derived products on UVB-mediated damage in human reconstituted skin | Exp Dermatol | 18 |
| 3 | Al-Niaimi F, Chiang NYZ | 2017 | Topical vitamin C and the skin: mechanisms of action and clinical applications | J Clin Aesthet Dermatol | 18 |
| 4 | Aziz DE, Abdelbary AA, Elassasy AI | 2018 | Fabrication of novel elastosomes for boosting the transdermal delivery of diacerein: statistical optimization, ex-vivo permeation, in-vivo skin deposition and pharmacokinetic assessment compared to oral formulation | Drug Deliv | 18 |
| 5 | Aziz DE, Abdelbary AA, Elassasy AI | 2019 | Investigating superiority of novel bilosomes over niosomes in the transdermal delivery of diacerein: in vitro characterization, ex vivo permeation and in vivo skin deposition study | J Liposome Res | 18 |
| 6 | Badria FA, Fayed HA, Ibraheem AK, et al. | 2020 | Formulation of sodium valproate nanospanlastics as a promising approach for drug repurposing in the treatment of androgenic alopecia | Pharmaceutics | 18 |
| 7 | Bancroft JD, Gamble M. | 1996 | Theory and practice of histological techniques | Churchill Livingstone | 18 |