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Modulation of persistent organic pollutant toxicity through nutritional intervention: emerging opportunities in biomedicine and environmental remediation

机译:通过营养干预来调节持久性有机污染物的毒性:生物医学和环境修复中的新机遇

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摘要

Environmental pollution is increasing worldwide, and there is evidence that exposure to halogenated persistent organic pollutants (POPs) such as polychlorinated biphenyls can contribute to the pathology of inflammatory diseases such as atherosclerosis, diabetes, and cancer. Pollutant removal from contaminated sites and subsequent pollutant degradation are critical for reducing the long-term health risks associated with exposure. However, complete remediation of a toxicant from the environment is very difficult and cost-prohibitive. Furthermore, remediation technologies often result in the generation of secondary toxicants. Considering these circumstances, environmentally-friendly and sustainable remediation technologies and biomedical solutions to reduce vulnerability to environmental chemical insults need to be explored to reduce the overall health risks associate with exposure to environmental pollutants. We propose that positive lifestyle changes such as healthful nutrition and consumption of diets rich in fruits and vegetables or bioactive nutrients with antioxidant and/or anti-inflammatory properties will reduce the body’s vulnerability to environmental stressors and thus reduce toxicant-mediated disease pathologies. Interestingly, emerging evidence now implicates the incorporation of bioactive nutrients, such as plant-derived polyphenols, in technologies focused on the capture, sensing and remediation of halogenated POPs. We propose that human nutritional intervention in concert with the use of natural polyphenol sensing and remediation platforms may provide a sensible means to develop primary and long-term prevention strategies of diseases associated with many environmental toxic insults including halogenated POPs.
机译:在世界范围内,环境污染日益加剧,有证据表明,暴露于多氯联苯等卤化持久性有机污染物(POPs)会导致诸如动脉粥样硬化,糖尿病和癌症等炎性疾病的病理变化。从受污染场所清除污染物以及随后的污染物降解对于降低与暴露相关的长期健康风险至关重要。但是,从环境中完全清除有毒物质是非常困难的,而且成本高昂。此外,补救技术通常会导致产生第二种有毒物质。考虑到这些情况,需要探索减少污染易受环境化学侵害的环境友好和可持续的修复技术和生物医学解决方案,以减少与暴露于环境污染物相关的总体健康风险。我们建议,积极的生活方式变化,例如健康的营养以及食用富含水果和蔬菜的饮食或具有抗氧化和/或抗炎特性的生物活性营养素,将减少人体对环境压力的脆弱性,从而减少由毒物介导的疾病。有趣的是,现在出现的新证据表明,在专注于捕获,感测和修复卤代POPs的技术中,将生物活性营养物(例如植物来源的多酚)纳入其中。我们建议,与天然多酚感测和修复平台配合使用的人类营养干预措施可能为开发与许多环境毒性损害(包括卤化持久性有机污染物)有关的疾病的一级和长期预防策略提供明智的手段。

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