全氟和多氟烷基物质:主要接触部位的免疫毒性。

IF 5.7 2区 医学 Q1 TOXICOLOGY
Emma Arnesdotter, Charlotte B A Stoffels, Wiebke Alker, Arno C Gutleb, Tommaso Serchi
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引用次数: 0

摘要

全氟和多氟烷基物质(PFAS)是广泛用于工业和消费品的持久性合成化学品,导致环境污染和人类接触。本综述的重点是全氟烷基酸,全氟烷基酸是PFAS的一个子集,主要通过饮食(包括饮用水)和其他途径(如灰尘摄入和皮肤接触)接触。疫苗抗体反应受损已被欧洲食品安全局确定为风险评估中最关键的影响。此外,人类流行病学研究已将暴露于某些PFAS与各种免疫相关结果(如哮喘、过敏和炎症性肠病)联系起来。本综述利用人类流行病学数据作为调查这些影响的基础,研究了全氟烷基酸在主要暴露部位(肺、肠和皮肤)的潜在免疫调节作用。虽然引用了动物研究作为背景,但本文强调需要进一步进行基于人类的研究,以解决有关PFAS及其免疫学影响的关键问题。对与这些效应有关的体外毒性试验的现状进行了全面的回顾,并讨论了与本主题有关的关键问题。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Per- and polyfluoroalkyl substances (PFAS): immunotoxicity at the primary sites of exposure.

Per- and polyfluoroalkyl substances (PFAS) are persistent synthetic chemicals widely used in industrial and consumer products, leading to environmental contamination and human exposure. This review focuses on perfluoroalkyl acids, a subset of PFAS, which are primarily encountered through diet, including drinking water, and other pathways such as dust ingestion, and dermal contact. Impaired vaccine antibody response has been identified as the most critical effect for risk assessment by the European Food Safety Authority. Furthermore, human epidemiological studies have linked exposure to certain PFAS to various immune-related outcomes, such as asthma, allergies, and inflammatory bowel disease. This review examines potential immunomodulatory effects of perfluoroalkyl acids at the primary sites of exposure: lungs, intestines, and skin, using human epidemiological data as the basis for investigating these impacts. While animal studies are referenced for context, this paper highlights the need for further human-based research to address key questions about PFAS and their immunological impacts. The state of in vitro toxicity testing related to these effects is thoroughly reviewed and critical issues pertaining to this topic are discussed.

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来源期刊
CiteScore
9.50
自引率
1.70%
发文量
29
期刊介绍: Critical Reviews in Toxicology provides up-to-date, objective analyses of topics related to the mechanisms of action, responses, and assessment of health risks due to toxicant exposure. The journal publishes critical, comprehensive reviews of research findings in toxicology and the application of toxicological information in assessing human health hazards and risks. Toxicants of concern include commodity and specialty chemicals such as formaldehyde, acrylonitrile, and pesticides; pharmaceutical agents of all types; consumer products such as macronutrients and food additives; environmental agents such as ambient ozone; and occupational exposures such as asbestos and benzene.
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