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Natural Substances for Prevention of Skin Photoaging: Screening Systems in the Development of Sunscreen and Rejuvenation Cosmetics

机译:用于防止皮肤拍照的天然物质:防晒和复兴化妆品开发中的筛选系统

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Solar broadband UV irradiation is commonly regarded as a major causative reason for cutaneous photoaging. The pro-aging molecular pathways and cellular targets affected by UVA+UVB light in human skin have been extensively investigated. Notwithstanding growing knowledge in mechanisms of photoaging, research and development of clinically efficient, nontoxic, and sustainable topical preparations providing full physical, chemical, and biological photoprotection still remain a great challenge for pharmaceutical and cosmetic industries. In this study, we are proposing a panel of the in vitro methods for preselection of natural photoprotective substances with high photostability and low phototoxicity able of absorbing a broadband UVA+UVB irradiation (physical sunscreen), reducing UV-related overproduction of free radicals and loss of endogenous antioxidants (chemical protection), and attenuating UV-induced cytotoxicity and immune and metabolic responses (biological protection) in primary human epidermal keratinocytes and immortalized human keratinocyte cultures. Our data showed that secondary metabolites biosynthesized in plant cells in response to UV irradiation, such as phenylpropanoids and their glycosylated metabolites, aglycons and glycosylated flavonoids, and leontopodic acids, hold the best promise for complete natural topical prevention of photoaging and rejuvenation of photoaged skin. Meristem plant cell cultures elicited by solar simulating UV could be the most environmentally sustainable biotechnological source of polyphenols with combined photoprotective and antiaging properties.
机译:太阳能宽带紫外线辐照通常被认为是皮肤光学手册的主要致病原因。已经广泛地研究了受UVA + UVB光影响的促老化分子途径和细胞靶点。尽管存在越来越多的知识,但在临床高效,无毒和可持续的局部制剂提供完全物理,化学品和生物光保护的临床高效,无毒和可持续的局部制剂的机制上仍然是制药和化妆品行业的巨大挑战。在这项研究中,我们提出了一种用于预选具有高光稳定性和低光毒性的自然光保护物质的体外方法的面板,可以吸收宽带UVA + UVB辐照(物理防晒剂),从而降低了UV相关的自由基和损失过量生产内源性抗氧化剂(化学保护),并衰减紫外线诱导的细胞毒性和免疫和代谢反应(生物保护)在原发性人体表皮角质细胞和永生的人角蛋白细胞培养中。我们的数据显示,次级代谢物在植物细胞中生物合成,响应于紫外线辐照,例如苯丙醇丙烷和它们的糖基化代谢物,糖苷和糖基化的类黄酮,以及Leantopodic酸,为完全自然的局部预防光电和恢复活性皮肤的最佳承诺。通过太阳能模拟UV引发的植物细胞培养物可以是具有组合光保护和抗衰液性能的多酚最环保的生物技术来源。

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