空气污染:成人大脑中的神经毒性:来自实验发现的新概念

A. Haghani, T. Morgan, H. Forman, C. Finch
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引用次数: 0

摘要

流行病学研究表明,空气污染暴露的增加与阿尔茨海默病和其他神经退行性疾病的风险增加有关。实际上,空气污染加速了许多老化条件,从而促进了老年人的认知能力下降。由于其化学和物理的复杂性,其潜在的机制和影响范围在很大程度上仍然未知。此外,个体对空气污染的反应是由污染物混合物与暴露个体的生物学特征(如年龄、性别、遗传背景、潜在疾病和营养)以及其他环境因素(包括暴露于香烟烟雾)的复杂界面形成的。要解决这一复杂的问题,需要更详细的不同人群的环境和生活方式数据,以及系统的实验方法。我们的综述旨在总结现有的关于空气污染对成年啮齿动物神经毒性实验研究的文献,并确定我们前进的关键差距和新出现的挑战。对于实验生物学家来说,批判性地理解先前的发现并开发创新方法来解决这一紧迫的全球问题是及时的。我们希望提高神经科学和老年生物医学领域的同事对空气污染对大脑衰老的重要性的认识,并支持将研究结果立即转化为公共卫生指南,以调节加速衰老过程的补救环境因素。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Air Pollution Neurotoxicity in the Adult Brain: Emerging Concepts from Experimental Findings
Epidemiological studies are associating elevated exposure to air pollution with increased risk of Alzheimer’s disease and other neurodegenerative disorders. In effect, air pollution accelerates many aging conditions that promote cognitive declines of aging. The underlying mechanisms and scale of effects remain largely unknown due to its chemical and physical complexity. Moreover, individual responses to air pollution are shaped by an intricate interface of pollutant mixture with the biological features of the exposed individual such as age, sex, genetic background, underlying diseases, and nutrition, but also other environmental factors including exposure to cigarette smoke. Resolving this complex manifold requires more detailed environmental and lifestyle data on diverse populations, and a systematic experimental approach. Our review aims to summarize the modest existing literature on experimental studies on air pollution neurotoxicity for adult rodents and identify key gaps and emerging challenges as we go forward. It is timely for experimental biologists to critically understand prior findings and develop innovative approaches to this urgent global problem. We hope to increase recognition of the importance of air pollution on brain aging by our colleagues in the neurosciences and in biomedical gerontology, and to support the immediate translation of the findings into public health guidelines for the regulation of remedial environmental factors that accelerate aging processes.
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