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微塑料暴露对人类细胞的毒理学影响的快速综述和荟萃回归分析。

A rapid review and meta-regression analyses of the toxicological impacts of microplastic exposure in human cells.

机构信息

Hull York Medical School, University of Hull, Allam Medical Building, Hull HU6 7RX, United Kingdom.

Hull York Medical School, University of Hull, Allam Medical Building, Hull HU6 7RX, United Kingdom.

出版信息

J Hazard Mater. 2022 Apr 5;427:127861. doi: 10.1016/j.jhazmat.2021.127861. Epub 2021 Nov 24.

Abstract

Humans are exposed to microplastics (MPs) daily via ingestion and inhalation. It is not known whether this results in adverse health effects and, if so, at what levels of exposure. Without epidemiological studies, human cell in vitro MP toxicological studies provide an alternative approach to this question. This review systematically synthesised all evidence and estimated thresholds of dose-response relationships. MEDLINE and Web of Science were searched from inception to March 2021 and study quality was rated using a novel risk of bias assessment tool. Seventeen studies were included in the rapid review and eight in the meta-regression. Four biological endpoints displayed MP-associated effects: cytotoxicity, immune response, oxidative stress, barrier attributes, and one did not (genotoxicity). Irregular shape was found to be the only MP characteristic predicting cell death, along with the duration of exposure and MP concentration (μg/mL). Cells showed varying cytotoxic sensitivity to MPs, with Caco-2 cells (human adenocarcinoma cell line) being the most susceptible. Minimum, environmentally-relevant, concentrations of 10 μg/mL (5-200 µm), had an adverse effect on cell viability, and 20 μg/mL (0.4 µm) on cytokine release. This work is the first to quantify thresholds of MPs effects on human cells in the context of risk assessment.

摘要

人类每天通过摄入和吸入接触微塑料 (MPs)。目前尚不清楚这是否会对健康产生不良影响,如果有,那么在什么暴露水平下会产生影响。由于缺乏流行病学研究,人类体外细胞 MP 毒理学研究为这个问题提供了一种替代方法。本综述系统地综合了所有证据,并估计了剂量反应关系的阈值。从创建到 2021 年 3 月,在 MEDLINE 和 Web of Science 上进行了搜索,并使用一种新的偏倚风险评估工具对研究质量进行了评级。快速审查纳入了 17 项研究,荟萃回归分析纳入了 8 项研究。四个生物学终点显示出与 MPs 相关的效应:细胞毒性、免疫反应、氧化应激、屏障属性,一个没有(遗传毒性)。研究发现,不规则形状是唯一能预测细胞死亡的 MPs 特征,同时还与暴露时间和 MPs 浓度(μg/mL)有关。细胞对 MPs 的细胞毒性敏感性不同,其中 Caco-2 细胞(人腺癌细胞系)最敏感。最低、环境相关的浓度 10μg/mL(5-200μm)对细胞活力有不良影响,20μg/mL(0.4μm)对细胞因子释放有不良影响。这项工作首次在风险评估背景下量化了 MPs 对人类细胞的影响阈值。

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