皮肤是如何感知阳光的?光传感分子的综合观点

Leonardo Vinicius Monteiro de Assis , Paulo Newton Tonolli , Maria Nathalia Moraes , Maurício S. Baptista , Ana Maria de Lauro Castrucci
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引用次数: 33

摘要

长期以来,关于过度阳光照射对人体健康影响的共识一直强调太阳紫外线辐射的负面影响。然而,尽管紫外线辐射被妖魔化了,但人们对使用防晒霜时暴露在阳光下的后果知之甚少,因为防晒霜会导致高度的可见光暴露。紫外线和可见光在维生素D合成、降低血压等有益作用中起着关键作用。在这篇综述中,我们旨在通过回顾有关紫外线和可见光的有益和有害影响的数据,全面了解人类皮肤对阳光的广泛反应。我们从探索光子在皮肤中的相互作用开始,包括物理(光子穿透深度),化学(光吸收和随后的光化学事件)和生物(细胞和组织如何反应)。只有考虑到皮肤中存在的吸收光的分子,特别是被称为视蛋白的感光蛋白,才能全面理解皮肤对阳光照射的反应。事实上,许多细胞对阳光照射的反应是由视蛋白调节的,视蛋白起着“皮肤的眼睛”的作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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How does the skin sense sun light? An integrative view of light sensing molecules

The consensus on the effects of excessive sun exposure on human health has long emphasized the negative effects of solar UV radiation. Nevertheless, although UV radiation has been demonized, less is known about the consequences of sun exposure while using sunscreen, which can lead to high visible light exposure. UV and visible light play key roles in vitamin D synthesis, reduction of blood pressure, among other beneficial effects. In this review, we aim to provide a comprehensive view of the wide range of responses of the human skin to sunlight by revisiting data on the beneficial and harmful effects of UV and visible light. We start by exploring the interaction of photons in the skin at several levels including physical (depth of photon penetration), chemical (light absorption and subsequent photochemical events), and biological (how cells and tissues respond). Skin responses to sun exposure can only be comprehensively understood through a consideration of the light-absorbing molecules present in the skin, especially the light-sensing proteins called opsins. Indeed, many of the cellular responses to sun exposure are modulated by opsins, which act as the “eyes of the skin”.

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来源期刊
CiteScore
21.90
自引率
0.70%
发文量
36
审稿时长
47 days
期刊介绍: The Journal of Photochemistry and Photobiology C: Photochemistry Reviews, published by Elsevier, is the official journal of the Japanese Photochemistry Association. It serves as a platform for scientists across various fields of photochemistry to communicate and collaborate, aiming to foster new interdisciplinary research areas. The journal covers a wide scope, including fundamental molecular photochemistry, organic and inorganic photochemistry, photoelectrochemistry, photocatalysis, solar energy conversion, photobiology, and more. It provides a forum for discussing advancements and promoting collaboration in the field of photochemistry.
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