结合化学分析的细颗粒物(PM2.5)体内暴露研究的比较。

IF 6.4 2区 医学 Q1 ENVIRONMENTAL SCIENCES
Allie Sidwell, Samuel Cole Smith, Courtney Roper
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引用次数: 9

摘要

细颗粒物(PM2.5)中存在的复杂、可变的混合物已经得到了很好的证实,化学成分与人类健康之间的联系正在扩大。在过去的十年里,包括对样本进行化学分析在内的PM2.5毒理学研究有所增加。这项调查是确定暴露于PM2.5后观察到的不良健康影响的因果成分的关键组成部分。在这篇综述中,我们探索了PM2.5在体内模型中的研究,并对呼吸、心血管、中枢神经系统、生殖和发育毒性进行了化学分析,以确定化学成分是否在解释毒性发现时被考虑在内。模型系统、PM2.5特征、终点和结果之间进行了比较。绝大多数研究观察到暴露于PM2.5后的体内不良影响。虽然有限,但探索化学成分和测量终点之间联系的研究指出,生物测量与各种PM2.5成分(包括元素、离子和有机/元素碳)之间存在显著关联,表明需要进行此类分析。指出了现有数据的局限性,包括收集的毒性和化学数据集之间的统计比较相对较少。该领域的未来进展与检查化学成分的流行病学研究相结合,可能会支持PM2.5的监管标准,以保护人类健康。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A comparison of fine particulate matter (PM2.5) in vivo exposure studies incorporating chemical analysis.

The complex, variable mixtures present in fine particulate matter (PM2.5) have been well established, and associations between chemical constituents and human health are expanding. In the past decade, there has been an increase in PM2.5 toxicology studies that include chemical analysis of samples. This investigation is a crucial component for identifying the causal constituents for observed adverse health effects following exposure to PM2.5. In this review, investigations of PM2.5 that used both in vivo models were explored and chemical analysis with a focus on respiratory, cardiovascular, central nervous system, reproductive, and developmental toxicity was examined to determine if chemical constituents were considered in the interpretation of the toxicity findings. Comparisons between model systems, PM2.5 characteristics, endpoints, and results were made. A vast majority of studies observed adverse effects in vivo following exposure to PM2.5. While limited, investigations that explored connections between chemical components and measured endpoints noted significant associations between biological measurements and a variety of PM2.5 constituents including elements, ions, and organic/elemental carbon, indicating the need for such analysis. Current limitations in available data, including relatively scarce statistical comparisons between collected toxicity and chemical datasets, are provided. Future progress in this field in combination with epidemiologic research examining chemical composition may support regulatory standards of PM2.5 to protect human health.

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来源期刊
CiteScore
13.80
自引率
6.90%
发文量
13
审稿时长
>24 weeks
期刊介绍: "Journal of Toxicology and Environmental Health: Part B - Critical Reviews" is an academic journal published by Taylor & Francis, focusing on the critical examination of research in the areas of environmental exposure and population health. With an ISSN identifier of 1093-7404, this journal has established itself as a significant source of scholarly content in the field of toxicology and environmental health. Since its inception, the journal has published over 424 articles that have garnered 35,097 citations, reflecting its impact and relevance in the scientific community. Known for its comprehensive reviews, the journal also goes by the names "Critical Reviews" and "Journal of Toxicology & Environmental Health, Part B, Critical Reviews." The journal's mission is to provide a platform for in-depth analysis and critical discussion of the latest findings in toxicology, environmental health, and related disciplines. By doing so, it contributes to the advancement of knowledge and understanding of the complex interactions between environmental factors and human health, aiding in the development of strategies to protect and improve public health.
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