细颗粒物质的发育毒性:从流行病学和实验室角度进行的多方面探索

Toxics Pub Date : 2024-04-06 DOI:10.3390/toxics12040274
Ruifeng Yan, Danni Ma, Yutong Liu, Rui Wang, Lifan Fan, Qiqi Yan, Chen Chen, Wenhao Wang, Zhihua Ren, Tingting Ku, Xia Ning, Nan Sang
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引用次数: 0

摘要

粒径≤2.5 μm(PM2.5)的颗粒物是一种严重的环境威胁,在很大程度上加重了全球疾病负担。然而,尽管该领域的研究进展迅速,但现有的发育毒性研究仍受到数据来源有限、质量参差不齐以及深入机理分析不足等因素的制约。本综述包括目前可用的流行病学和实验室证据,全面描述了 PM2.5 在不同地区和不同污染源对发育中个体的不利影响。此外,本综述还探讨了不同种族、性别和社会经济水平的个体接触 PM2.5 对不良出生结果以及心肺和神经系统发育的影响。此外,PM2.5 对健康的不良影响所涉及的分子机制主要包括转录和翻译调节、氧化应激、炎症反应和表观遗传调节。研究探讨了公共健康与 PM2.5 之间关系的主要发现和新观点,强调了未来研究探索其来源、组成和性别特异性影响的必要性。此外,还需要进一步研究深入探讨更复杂的潜在机制,以有效预防或减轻空气污染对人类健康的有害影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Developmental Toxicity of Fine Particulate Matter: Multifaceted Exploration from Epidemiological and Laboratory Perspectives.
Particulate matter of size ≤ 2.5 μm (PM2.5) is a critical environmental threat that considerably contributes to the global disease burden. However, accompanied by the rapid research progress in this field, the existing research on developmental toxicity is still constrained by limited data sources, varying quality, and insufficient in-depth mechanistic analysis. This review includes the currently available epidemiological and laboratory evidence and comprehensively characterizes the adverse effects of PM2.5 on developing individuals in different regions and various pollution sources. In addition, this review explores the effect of PM2.5 exposure to individuals of different ethnicities, genders, and socioeconomic levels on adverse birth outcomes and cardiopulmonary and neurological development. Furthermore, the molecular mechanisms involved in the adverse health effects of PM2.5 primarily encompass transcriptional and translational regulation, oxidative stress, inflammatory response, and epigenetic modulation. The primary findings and novel perspectives regarding the association between public health and PM2.5 were examined, highlighting the need for future studies to explore its sources, composition, and sex-specific effects. Additionally, further research is required to delve deeper into the more intricate underlying mechanisms to effectively prevent or mitigate the harmful effects of air pollution on human health.
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