Ma Xue, Cai Delei, Chen Qing, Zhu Zhoujing, Zhang Shixin, Wang Ziyu, Hu Zhengyan, Shen Haitao, Meng Zhen
Zhejiang Provincial Center for Disease Control and Prevention, 3399 Binsheng Road, Hangzhou 310051, China.
Metabolites. 2024 Jul 19;14(7):392. doi: 10.3390/metabo14070392.
Per- and polyfluoroalkyl substances (PFAS) represent a class of persistent synthetic chemicals extensively utilized across industrial and consumer sectors, raising substantial environmental and human health concerns. Epidemiological investigations have robustly linked PFAS exposure to a spectrum of adverse health outcomes. Altered metabolites stand as promising biomarkers, offering insights into the identification of specific environmental pollutants and their deleterious impacts on human health. However, elucidating metabolic alterations attributable to PFAS exposure and their ensuing health effects has remained challenging. In light of this, this review aims to elucidate potential biomarkers of PFAS exposure by presenting a comprehensive overview of recent metabolomics-based studies exploring PFAS toxicity. Details of PFAS types, sources, and human exposure patterns are provided. Furthermore, insights into PFAS-induced liver toxicity, reproductive and developmental toxicity, cardiovascular toxicity, glucose homeostasis disruption, kidney toxicity, and carcinogenesis are synthesized. Additionally, a thorough examination of studies utilizing metabolomics to delineate PFAS exposure and toxicity biomarkers across blood, liver, and urine specimens is presented. This review endeavors to advance our understanding of PFAS biomarkers regarding exposure and associated toxicological effects.
全氟和多氟烷基物质(PFAS)是一类持久性合成化学品,在工业和消费领域广泛使用,引发了重大的环境和人类健康问题。流行病学调查有力地将PFAS暴露与一系列不良健康后果联系起来。代谢物改变是很有前景的生物标志物,有助于识别特定环境污染物及其对人类健康的有害影响。然而,阐明PFAS暴露引起的代谢改变及其对健康的影响仍然具有挑战性。鉴于此,本综述旨在通过全面概述近期基于代谢组学的探索PFAS毒性的研究,阐明PFAS暴露的潜在生物标志物。提供了PFAS类型、来源和人类暴露模式的详细信息。此外,还综合了对PFAS诱导的肝脏毒性、生殖和发育毒性、心血管毒性、葡萄糖稳态破坏、肾脏毒性和致癌作用的见解。此外,还对利用代谢组学来确定血液、肝脏和尿液样本中PFAS暴露和毒性生物标志物的研究进行了全面审查。本综述致力于增进我们对PFAS暴露生物标志物及其相关毒理学效应的理解。