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日光紫外线照射与皮肤光老化

Solar UV irradiation and dermal photoaging.

作者信息

Wlaschek M, Tantcheva-Poór I, Naderi L, Ma W, Schneider L A, Razi-Wolf Z, Schüller J, Scharffetter-Kochanek K

机构信息

Department of Dermatology, University of Cologne, Joseph-Stelzmann-Strasse 9, 50931 Cologne, Germany.

出版信息

J Photochem Photobiol B. 2001 Oct;63(1-3):41-51. doi: 10.1016/s1011-1344(01)00201-9.

Abstract

The skin is increasingly exposed to ambient UV-irradiation thus increasing risks for photooxidative damage with long-term detrimental effects like photoaging, characterized by wrinkles, loss of skin tone and resilience. Photoaged skin displays alterations in the cellular component and extracellular matrix with accumulation of disorganized elastin and its microfibrillar component fibrillin in the deep dermis and a severe loss of interstitial collagens, the major structural proteins of the dermal connective tissue. The unifying pathogenic agents for these changes are UV-generated reactive oxygen species (ROS) which deplete and damage non-enzymatic and enzymatic antioxidant defense systems of the skin. As well as causing permanent genetic changes, ROS activate cytoplasmic signal transduction pathways in resident fibroblasts that are related to growth, differentiation, senescence and connective tissue degradation. This review focuses on the role of UV-induced ROS in the photodamage of the skin resulting in clinical and biochemical characteristics of photoaging. In addition, the relationship of photoaging to intrinsic aging of the skin will be briefly discussed. A decrease in the overall ROS load by efficient sunscreens or other protective agents may represent promising strategies to prevent or at least minimize ROS-induced photoaging.

摘要

皮肤越来越多地暴露于环境紫外线辐射下,从而增加了光氧化损伤的风险,长期会产生诸如光老化等有害影响,其特征为皱纹、肤色丧失和弹性下降。光老化皮肤在细胞成分和细胞外基质方面表现出改变,深层真皮中出现无序弹性蛋白及其微原纤维成分原纤蛋白的积累,以及作为真皮结缔组织主要结构蛋白的间质胶原蛋白的严重流失。这些变化的共同致病因素是紫外线产生的活性氧(ROS),它会消耗和损害皮肤的非酶促和酶促抗氧化防御系统。除了引起永久性基因变化外,ROS还会激活驻留成纤维细胞中与生长、分化、衰老和结缔组织降解相关的细胞质信号转导途径。本综述重点关注紫外线诱导的ROS在皮肤光损伤中的作用,以及由此导致的光老化的临床和生化特征。此外,还将简要讨论光老化与皮肤自然老化的关系。通过有效的防晒霜或其他保护剂降低总体ROS负荷可能是预防或至少最小化ROS诱导的光老化的有前景的策略。

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