吸入微塑料--毒理学的复杂性

Toxics Pub Date : 2024-05-11 DOI:10.3390/toxics12050358
Myriam Borgatta, F. Breider
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引用次数: 0

摘要

人类长期吸入空气中的微塑料(MPs)。在肺部样本中检测到了各种类型的聚合物微粒,它们可能对人类健康构成威胁。吸入毒理学研究对于评估空气传播的微塑料的影响和采取减少接触的措施至关重要。这篇通讯论文探讨了与多孔塑料有关的重要健康问题,考虑到了三个层面的复杂性,即颗粒本身、塑料中的添加剂以及吸附在颗粒上的外源物质。这种方法旨在获得沉积在肺部的 MPs 的全面毒理学特征,包括局部和全身影响。多孔质塑料的物理化学特性可能在肺部毒性中起着关键作用。虽然有证据表明 MPs 在动物和细胞模型中具有毒性作用,但尚未确定其与人类肺部或全身疾病的因果关系。在人体中,MPs 和相关化学物质从肺部进入血液和/或肺循环的情况仍有待证实。要了解 MPs 的毒性,需要采用 "一体健康 "方法进行多学科调查。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Inhalation of Microplastics—A Toxicological Complexity
Humans are chronically exposed to airborne microplastics (MPs) by inhalation. Various types of polymer particles have been detected in lung samples, which could pose a threat to human health. Inhalation toxicological studies are crucial for assessing the effects of airborne MPs and for exposure-reduction measures. This communication paper addresses important health concerns related to MPs, taking into consideration three levels of complexity, i.e., the particles themselves, the additives present in the plastics, and the exogenous substances adsorbed onto them. This approach aims to obtain a comprehensive toxicological profile of deposited MPs in the lungs, encompassing local and systemic effects. The physicochemical characteristics of MPs may play a pivotal role in lung toxicity. Although evidence suggests toxic effects of MPs in animal and cell models, no established causal link with pulmonary or systemic diseases in humans has been established. The transfer of MPs and associated chemicals from the lungs into the bloodstream and/or pulmonary circulation remains to be confirmed in humans. Understanding the toxicity of MPs requires a multidisciplinary investigation using a One Health approach.
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