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KMID : 0043320140370101241
Archives of Pharmacal Research
2014 Volume.37 No. 10 p.1241 ~ p.1251
Antimelanogenic chemicals with in vivo efficacy against skin pigmentation in guinea pigs
Hong Seung-Deok

Yoon Da-Young
Lee Seung-Mean
Han Sang-Bae
Kim Young-Soo
Abstract
Ultraviolet (UV) radiation under sunlight stimulates skin pigmentation through immediately affecting the oxidative modification of existing melanin pigments and the spatial redistribution of pigmented melanosomes followed by the up-regulation of melanogenic genes in delayed kinetics. However, abnormal accumulation and synthesis of melanin biopolymers are responsible for skin disorders with more pigmented patches. Chemical-based regulation of the hyperpigmented disorders has been a long-standing goal for cosmetic and pharmaceutical applications. A large number of the chemicals with antimelanogenic activity have met with limited or no success in the treatment of skin patients, since they may not overcome the challenge of penetrating the skin barrier. Guinea pig skin displays similar kinetic parameters to human skin in the transdermal absorption of numerous chemicals, thus can serve as the surrogate for human skin. Here, we provide a concise review of our current understanding of the chemical-based therapy against skin hyperpigmentation in UV-irradiated guinea pig models, suggest molecular mechanisms of the action and emphasize the translation from preclinical outcomes to skin patients.
KEYWORD
Skin pigmentation, Chemical regulation, Antimelanogenic mechanism, Guinea pig model, Clinical trial
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