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A novel method for evaluating the effect of pollution on the human skin under controlled conditions

机译:一种评价受控条件下污染对人体皮肤造成效应的新方法

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摘要

Abstract Background Generally considered as a major risk factor for various respiratory diseases, air pollution can also have a significant impact on the skin. To date, there is a plethora of cosmetics products with “anti‐pollution” claims. However, these claims have not been fully substantiated with robust scientific evidence and currently there is no standardized method in place for validating the anti‐pollution efficacy of cosmetics products. Materials and Methods This article discusses an innovative Controlled Pollution Exposure System (CPES) which allows quantified administration of pollutants on the skin and analysis of their direct impact. Using CPES, human subjects were exposed to ambient dust and ozone and sebum were sampled and analyzed for biomarkers. Results Following exposure of human subjects’ skin to either ambient dust(100‐450?μg/cm 3 ) or ozone(100‐1000?ppb), analysis of sebum revealed a significant decrease in squalene concentration, and significant increases in squalene monohydroperoxide and malondialdehyde concentration. Conclusion The findings demonstrate cutaneous oxidative stress induced by ambient dust and ozone. The findings also demonstrate the efficacy of CPES to accurately measure the direct effect of controlled gaseous and particulate pollutants on human skin and indicate that squalene, squalene monohydroperoxide and malondialdehyde may serve as potent biomarkers for evaluating potential anti‐pollution claims of cosmetics products.
机译:摘要背景通常被认为是各种呼吸系统疾病的主要危险因素,空气污染也会对皮肤产生重大影响。迄今为止,有一种具有“反污染”索赔的化妆品产品。然而,这些索赔没有完全证实,具有强大的科学证据,目前没有标准化方法,用于验证化妆品产品的抗污染效果。材料和方法本文讨论了一种创新的控制污染暴露系统(CPE),允许量化污染物对皮肤的施用和分析它们的直接影响。使用CPE,人体受试者暴露于环境粉尘,并对生物标志物进行取样并分析臭氧和皮脂。导致人受试者的皮肤暴露于环境粉尘(100-450〜μg/ cm 3)或臭氧(100-1000〜ppb)后,SEBUM的分析表明,角鲨烯浓度显着降低,并且Squalene单氢化氧化钠的显着增加丙二醛浓度。结论发现表明,环境粉尘和臭氧引起的皮肤氧化应激。研究结果还证明了CPE准确测量控制气态和颗粒污染物对人体皮肤的直接影响的功效,并表明Squalene,Squalene单氢氧化钠和丙二醛可以作为有效的生物标志物,用于评估化妆品产品的潜在防污染。

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