Telomere Protective Effects of a Cyanobacteria Phycocyanin against Blue Light and UV Irradiations: A Skin Anti-Aging and Photo-Protective Agent

F. Joly, J. Branka, E. Darnis, L. Lefeuvre
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引用次数: 2

Abstract

Background: Cyanobacteria phycocyanins (Cps) have already shown powerful antioxidant properties. In human cells submitted to oxidative stress the telomeres length decrease, the expression of progerin and the activity of mTOR are increased. At our knowledge, there is no published data on Cps correlated with ultraviolet radiation (UV) and blue light effects in human cells regarding telomeres’ length, progerin expression or mTOR1 complex activity. Objectives: In this study, we sought to assess 1) telomeres’ length in newborn human fibroblasts exposed to UV and blue light; 2) progerin production in mature human normal fibroblasts exposed to UV; 3) mTOR1 activation in adult human normal keratinocytes exposed to UV, analyzing the activity of a Cyanobacteria phycocyanin (Cp) in these in vitro models. Materials and Methods: Human skin fibroblasts or human normal keratinocytes were cultured—in the absence or in the presence of Cp and submitted to UVB + UVA and blue light irradiations. Telomeres’ length, progerin expression and mTOR1 activity were then assessed by molecular biology and immuno-enzymatic methods. Results: In cultured fibroblasts exposed to irradiations and treated by Cp, telomeres’ shortage and progerin expression were lower compared to irradiated untreated cells. In cultured keratinocytes treated by Cp and exposed to irradiations, the mTOR activity was lower compared to irradiated untreated cells. Conclusions: In these in vitro studies on human skin fibroblasts and on normal human keratinocytes, the cyanobacteria phycocyanin (Cp) showed a decrease of damages induced by UV and blue light expressed by telomeres preservation and downregulation of progerin expression and of mTOR activity, thus showing skin anti-aging and photo-protective potential.
蓝藻蓝蛋白对蓝光和紫外线的端粒保护作用:一种皮肤抗衰老和光保护剂
背景:蓝藻蓝蛋白(Cps)已经显示出强大的抗氧化性能。氧化应激的人细胞端粒长度减少,progerin表达增加,mTOR活性增加。据我们所知,目前还没有关于人类细胞中端粒长度、progerin表达或mTOR1复合物活性与紫外线辐射(UV)和蓝光效应相关的Cps的公开数据。目的:在这项研究中,我们试图评估1)暴露于紫外线和蓝光下的新生人成纤维细胞的端粒长度;2)暴露于紫外线下的成熟人正常成纤维细胞的progerin生成;3)紫外线照射下成人正常角质形成细胞中mTOR1的激活,分析这些体外模型中蓝细菌藻蓝蛋白(Cp)的活性。材料和方法:将人皮肤成纤维细胞或人正常角质形成细胞在无或有Cp的情况下进行培养,并将其置于UVB + UVA和蓝光照射下。然后用分子生物学和免疫酶学方法评估端粒长度、progerin表达和mTOR1活性。结果:经Cp处理的体外培养成纤维细胞,端粒缺失和progerin表达均低于未处理的细胞。在经Cp处理并暴露于辐照下的培养角化细胞中,mTOR活性比未辐照的细胞低。结论:在人皮肤成纤维细胞和正常人角质形成细胞的体外实验中,蓝藻藻蓝蛋白(Cp)表现出通过端粒保存表达的紫外线和蓝光对皮肤的损伤减轻,并下调progerin表达和mTOR活性,显示出皮肤抗衰老和光保护潜力。
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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