Development of a Synthetic Substrate for the in vitro Performance Testing of Sunscreens
Author:
Publisher
S. Karger AG
Subject
Dermatology,Pharmacology,Physiology,General Medicine
Reference14 articles.
1. Rohr M, Klette E, Ruppert S, Bimzcok R, Klebon B, Heinrich U, Tronnier H, Johncock W, Peters S, Pflücker F, Rudolph T, Flösser- Müller H, Jenni K, Kockott D, Lademann J, Herzog B, Bielfeldt S, Mendrok-Edinger C, Hanay C, Zastrow L: In vitro sun protection factor: still a challenge with no final answer. Skin Pharmacol Physiol 2010;23:201-212.
2. Brown S, Diffey BL: The effect of applied thickness on sunscreen protection - in vivo and in vitro studies. Photochem Photobiol 1986;44:509-513.
3. Stokes RP, Diffey BL: The feasibility of using fluorescence spectroscopy as a rapid, noninvasive method for evaluating sunscreen performance. J Photochem Photobiol B 1999;50:137-143.
4. Fageon L, Moyal D, Coutet J, Candau D: Importance of sunscreen products spreading protocol and substrate roughness for in vitro sun protection factor assessment. Int J Cosmet Sci 2009;31:405-418.
5. Sohn M, Hêche A, Herzog B, Imanidis G: Film thickness frequency distribution of different vehicles determines sunscreen efficacy. J Biomed Opt 2014;19:115005.
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