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Photoprotection:extending lessons learned from studying natural sunscreens to the design of artificial sunscreen constituents

机译:光保护:将从研究天然防晒霜中学到的经验扩展到人造防晒霜成分的设计中

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摘要

Evolution has ensured that plants and animals have developed effective protection mechanisms against the potentially harmful effects of incident ultraviolet radiation (UVR). Tanning is one such mechanism in humans, but tanning only occurs post-exposure to UVR. Hence, there is ever growing use of commercial sunscreens to pre-empt overexposure to UVR. Key requirements for any chemical filter molecule used in such a photoprotective capacity include a large absorption cross-section in the UV-A and UV-B spectral regions and the availability of one or more mechanisms whereby the absorbed photon energy can de dissipated without loss of the molecular integrity of the chemical filter. Here we summarise recent experimental (mostly ultrafast pump-probe spectroscopy studies) and computational progress towards unravelling various excited state decay mechanisms that afford the necessary photostability in chemical filters found in nature and those used in commercial sunscreens. We also outline ways in which a better understanding of the photophysics and photochemistry of sunscreen molecules selected by nature could aid the design of new and improved commercial sunscreen formulations.
机译:进化已确保动植物已开发出有效的保护机制,可抵御入射紫外线辐射(UVR)的潜在有害影响。晒黑是人类中的一种此类机制,但是晒黑只会在暴露于UVR之后发生。因此,越来越多地使用商业防晒霜来防止过度暴露于UVR。以这种光保护能力使用的任何化学滤光片分子的关键要求包括在UV-A和UV-B光谱区域中的大吸收截面,以及一种或多种机制的可用性,通过这种机制,可以吸收吸收的光子能量而不会损失化学过滤器的分子完整性。在这里,我们总结了最近的实验性研究(主要是超快泵浦探针光谱学研究)和在揭示各种激发态衰减机制方面的计算进展,这些机制在自然界中发现的化学滤光片和商用防晒霜中提供了必要的光稳定性。我们还概述了更好地理解自然界所选择的防晒分子的光物理和光化学可以帮助设计新的和改良的商业防晒配方的方法。

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