Reproductive & developmental toxicity of quaternary ammonium compounds†.

IF 4.3 3区 材料科学 Q1 ENGINEERING, ELECTRICAL & ELECTRONIC ACS Applied Electronic Materials Pub Date : 2024-10-14 DOI:10.1093/biolre/ioae107
Leyla Bobic, Allison Harbolic, Genoa R Warner
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Abstract

Quaternary ammonium compounds are a class of chemicals commonly used as disinfectants in household and healthcare settings. Their usage has significantly increased in recent years due to the COVID-19 pandemic. In addition, quaternary ammonium compounds have replaced the recently banned disinfectants triclosan and triclocarban in consumer products. Quaternary ammonium compounds are found in daily antimicrobial and personal care products such as household disinfectants, mouthwash, and hair care products. Due to the pervasiveness of quaternary ammonium compounds in daily use products, humans are constantly exposed. However, little is known about the health effects of everyday quaternary ammonium compound exposure, particularly effects on human reproduction and development. Studies that investigate the harmful effects of quaternary ammonium compounds on reproduction are largely limited to high-dose studies, which may not be predictive of low-dose, daily exposure, especially as quaternary ammonium compounds may be endocrine-disrupting chemicals. This review analyzes recent studies on quaternary ammonium compound effects on reproductive health, identifies knowledge gaps, and recommends future directions in quaternary ammonium compound-related research. Summary Sentence  Quaternary ammonium compounds, a class of disinfecting compounds that have skyrocketed in usage during the COVID-19 pandemic, are emerging as reproductive and developmental toxicants.

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季铵盐化合物的生殖与发育毒性。
季铵盐化合物(QAC)是一类常用于家庭和医疗机构的消毒剂。近年来,由于 COVID-19 的流行,其使用量大幅增加。此外,在消费品中,QAC 已经取代了最近被禁用的消毒剂三氯生和三氯卡班。QAC 可见于日常抗菌和个人护理产品中,如家用消毒剂、漱口水和护发产品。由于 QACs 普遍存在于日用产品中,人类经常会接触到它。然而,人们对日常接触 QAC 对健康的影响知之甚少,尤其是对人类生殖和发育的影响。调查 QAC 对生殖有害影响的研究大多局限于高剂量研究,这可能无法预测低剂量的日常暴露,尤其是 QAC 可能是干扰内分泌的化学品。本综述分析了有关 QAC 对生殖健康影响的最新研究,指出了知识差距,并就 QAC 相关研究的未来方向提出了建议。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
7.20
自引率
4.30%
发文量
567
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