首页> 外文期刊>International Journal of Molecular Sciences >Fernblock, a Nutriceutical with Photoprotective Properties and Potential Preventive Agent for Skin Photoaging and Photoinduced Skin Cancers
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Fernblock, a Nutriceutical with Photoprotective Properties and Potential Preventive Agent for Skin Photoaging and Photoinduced Skin Cancers

机译:Fernblock,具有光防护特性的营养食品和潜在的皮肤光老化和光致皮肤癌预防剂

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摘要

Many phytochemicals are endowed with photoprotective properties, i.e., the capability to prevent the harmful effects of excessive exposure to ultraviolet (UV) light. These effects include photoaging and skin cancer, and immunosuppression. Photoprotection is endowed through two major modes of action: UV absorption or reflection/scattering; and tissue repair post-exposure. We and others have uncovered the photoprotective properties of an extract of the fern Polypodium leucotomos (commercial name Fernblock). Fernblock is an all-natural antioxidant extract, administered both topically (on the skin) or orally. It inhibits generation of reactive oxygen species (ROS) production induced by UV including superoxide anion. It also prevents damage to the DNA, inhibits UV-induced AP1 and NF-κB, and protects endogenous skin natural antioxidant systems, i.e., CAT, GSH, and GSSR. Its photoprotective effects at a cellular level include a marked decrease of UV-mediated cellular apoptosis and necrosis and a profound inhibition of extracellular matrix remodeling. These molecular and cellular effects translate into long-term inhibition of photoaging and carcinogenesis that, together with its lack of toxicity, postulate its use as a novel-generation photoprotective nutriceutical of phytochemical origin.
机译:许多植物化学物质具有光保护特性,即具有防止过度暴露于紫外线(UV)的有害影响的能力。这些影响包括光老化和皮肤癌以及免疫抑制。通过两种主要的作用方式赋予了光保护作用:紫外线吸收或反射/散射;和组织修复后的接触。我们和其他人发现了蕨白粉病菌(Polypodium leucotomos)提取物(商品名Fernblock)的光保护性能。 Fernblock是一种全天然抗氧化剂提取物,可以局部(在皮肤上)或口服给药。它可以抑制紫外线(包括超氧阴离子)诱导产生的活性氧(ROS)。它还可以防止DNA受损,抑制紫外线诱导的AP1和NF-κB,并保护内源性皮肤天然抗氧化剂系统,例如CAT,GSH和GSSR。它在细胞水平上的光保护作用包括紫外线介导的细胞凋亡和坏死的显着减少,以及对细胞外基质重塑的深刻抑制。这些分子和细胞作用转化为对光老化和致癌作用的长期抑制,再加上其缺乏毒性,因此推测其可用作植物化学来源的新一代光保护性营养素。

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