Abstract

BackgroundSolar radiation causes skin damage through the generation of reactive oxygen species (ROS). While UV filters effectively reduce UV‐induced ROS, they cannot prevent VIS‐induced (400‐760 nm) oxidative stress. Therefore, potent antioxidants are needed as additives to sunscreen products.MethodsWe investigated VIS‐induced ROS formation and the photoprotective effects of the Nrf2 inducer Licochalcone A (LicA).ResultsVisible spectrum of 400‐500 nm dose‐dependently induced ROS in cultured human fibroblasts at doses equivalent to 1 hour of sunshine on a sunny summer day (150 J/cm2). A pretreatment for 24 hours with 1 µmol/L LicA reduced ROS formation to the level of unirradiated cells while UV filters alone were ineffective, even at SPF50+. In vivo, topical treatment with a LicA‐containing SPF50 + formulation significantly prevented the depletion of intradermal carotenoids by VIS irradiation while SPF50 + control did not protect.ConclusionLicA may be a useful additive antioxidant for sunscreens.

Highlights

  • Life on earth is strongly depending on solar radiation

  • We present results that show the protective effect of Licochalcone A (LicA) on VIS-induced oxidative stress and Nrf[2] induction in vitro, and as protectant against stratum corneum (SC) carotenoid degradation in vivo

  • When cell cultures were protected only by a PMMA plate covered with the sunscreen SPF 50+/UVA-PF 40 with LicA (Figure 5A), this had no effect on VIS-induced reactive oxygen species (ROS) formation (Figure 5B)

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Summary

| INTRODUCTION

Life on earth is strongly depending on solar radiation. solar radiation can cause severe damage as a function of intensity and wavelength. We present results that show the protective effect of LicA on VIS-induced oxidative stress and Nrf[2] induction in vitro, and as protectant against SC carotenoid degradation in vivo

| MATERIAL AND METHODS
Findings
| DISCUSSION
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