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[降解微塑料引起细胞毒性的机制]

[Mechanisms of Cell Toxicity Caused by Degraded Microplastics].

作者信息

Haga Yuya, Manabe Sota, Tsujino Hirofumi, Asahara Haruyasu, Higashisaka Kazuma, Tsutsumi Yasuo

机构信息

Graduate School of Pharmaceutical Sciences, Osaka University.

School of Pharmaceutical Sciences, Osaka University.

出版信息

Yakugaku Zasshi. 2024;144(2):177-181. doi: 10.1248/yakushi.23-00152-3.

DOI:10.1248/yakushi.23-00152-3
PMID:38296495
Abstract

Microplastics (MPs), defined as plastic particles less than 5 mm in size, are ubiquitous in the environment. The accumulation of MPs in various environmental compartments, such as the ocean, soil, and air, has raised considerable concerns regarding their impact on ecological systems, including marine life and human health. Notably, MPs have been detected in marine organisms such as shellfish and fish, and have even been found in the human body, including in the blood and placenta. Moreover, considering that MPs have been detected in drinking water, human exposure to these particles in daily life is inevitable. To assess the risk posed by MPs to human health, it is essential to consider their physiological and chemical properties, including size, shape, surface modification, and material composition. However, current risk analyses focus primarily on spherical MPs with smooth surfaces, which differ substantially from most of the MPs detected in the environment. Environmental factors, such as ocean waves and ultraviolet radiation, alter the properties of MPs, including size, shape, and surface characteristics. In this review, we summarize current research on MPs, with a particular emphasis on the effects of MP degradation on human health. Furthermore, we generated MPs with surface degradation and evaluated their impact on cell toxicity, along with the underlying biological mechanisms.

摘要

微塑料(MPs)被定义为尺寸小于5毫米的塑料颗粒,在环境中无处不在。微塑料在海洋、土壤和空气等各种环境介质中的积累,引发了人们对其对生态系统(包括海洋生物和人类健康)影响的极大关注。值得注意的是,在贝类和鱼类等海洋生物中已检测到微塑料,甚至在人体中也发现了微塑料,包括血液和胎盘中。此外,鉴于在饮用水中已检测到微塑料,人类在日常生活中不可避免地会接触到这些颗粒。为了评估微塑料对人类健康构成的风险,必须考虑它们的生理和化学性质,包括尺寸、形状、表面改性和材料成分。然而,目前的风险分析主要集中在表面光滑的球形微塑料上,这与在环境中检测到的大多数微塑料有很大不同。海浪和紫外线辐射等环境因素会改变微塑料的性质,包括尺寸、形状和表面特征。在这篇综述中,我们总结了当前关于微塑料的研究,特别强调了微塑料降解对人类健康的影响。此外,我们制备了具有表面降解的微塑料,并评估了它们对细胞毒性的影响以及潜在的生物学机制。

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