通往大脑的途径:细颗粒物成分对中枢神经系统的影响。

IF 6.6 2区 医学 Q1 BIOCHEMISTRY & MOLECULAR BIOLOGY
Yasuhiro Ishihara, Miki Tanaka, Naoyuki Nezu, Nami Ishihara, Ami Oguro, Christoph F A Vogel
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引用次数: 0

摘要

空气动力学直径≤2.5µm (PM2.5)的细颗粒物因其对健康的不良影响而被广泛研究。大多数研究都集中在它对呼吸系统的影响上;然而,人们越来越多地关注它对大脑的影响。空气污染与神经系统疾病(如阿尔茨海默病、脑梗死和自闭症谱系障碍)之间的联系已被报道,动物模型中基于机制的研究提供了进一步的见解。PM2.5是数千种化学成分的复杂混合物。为了阐明其神经毒性机制,有必要研究其向大脑的运输途径及其各个成分的具体作用。本文重点介绍了PM2.5的主要成分——水溶性离子、金属、碳质颗粒、多环芳烃、醌类、塑料和生物气溶胶,并概述了它们进入中枢神经系统的潜在途径及其相关的作用机制。通过整合这些发现,本综述有助于更深入地了解PM2.5介导的神经系统效应,这是其健康影响的最关键方面之一。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Pathways to the Brain: Impact of Fine Particulate Matter Components on the Central Nervous System.

Fine particulate matter with an aerodynamic diameter ≤ 2.5 µm (PM2.5) has been extensively studied due to its adverse health effects. Most research has focused on its impact on the respiratory system; however, increasing attention is being directed toward its effects on the brain. Associations between air pollution and neurological disorders-such as Alzheimer's disease, cerebral infarction, and autism spectrum disorder-have been reported, with mechanism-based studies in animal models providing further insights. PM2.5 comprises a complex mixture of thousands of chemical constituents. To elucidate its neurotoxicity mechanisms, it is essential to investigate both its transport pathways to the brain and the specific actions of its individual components. This review highlights key PM2.5 components-water-soluble ions, metals, carbonaceous particles, polycyclic aromatic hydrocarbons, quinones, plastics, and bioaerosols-and outlines their potential routes of entry into the central nervous system, along with their associated mechanisms of action. By integrating these findings, this review contributes to a deeper understanding of the neurological effects mediated by PM2.5, which represent one of the most critical aspects of its health impact.

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来源期刊
Antioxidants
Antioxidants Biochemistry, Genetics and Molecular Biology-Physiology
CiteScore
10.60
自引率
11.40%
发文量
2123
审稿时长
16.3 days
期刊介绍: Antioxidants (ISSN 2076-3921), provides an advanced forum for studies related to the science and technology of antioxidants. It publishes research papers, reviews and communications. Our aim is to encourage scientists to publish their experimental and theoretical results in as much detail as possible. There is no restriction on the length of the papers. The full experimental details must be provided so that the results can be reproduced. Electronic files and software regarding the full details of the calculation or experimental procedure, if unable to be published in a normal way, can be deposited as supplementary electronic material.
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