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斑马鱼幼鱼中全氟和多氟烷基物质混合物诱导的代谢紊乱相关的线粒体功能障碍。

Mitochondrial dysfunction in metabolic disorders induced by per- and polyfluoroalkyl substance mixtures in zebrafish larvae.

机构信息

College of Environment, Zhejiang University of Technology, Hangzhou 310014, China; School of New Energy Science and Engineering, Xinyu University, Xinyu 338004, China; Research Institute of Poyang Lake, Jiangxi Academy of Sciences, Nanchang 330012, China.

Research Institute of Poyang Lake, Jiangxi Academy of Sciences, Nanchang 330012, China.

出版信息

Environ Int. 2023 Jun;176:107977. doi: 10.1016/j.envint.2023.107977. Epub 2023 May 15.

Abstract

Several per- and polyfluoroalkyl substances (PFAS) have been linked to metabolic disorders in organisms. However, few studies have considered their combined effects, which would be more representative of PFAS occurring in the environment. In this study, zebrafish embryos were exposed to a mixture of 18 PFAS at three environmentally relevant concentrations for 5 days to assess their bioconcentration and metabolic consequences. The burdens of ∑PFAS in zebrafish larvae were 0.12, 1.58, and 9.63 mg/kg in the 0.5, 5, and 50 μg/L treatment groups, respectively. Exposure to the PFAS mixture accelerated hatching and larval heart rates, increased energy expenditure, and reduced ATP levels and glucose contents due to decreased feed intake and glucose uptake. Metabolomic analysis revealed that exposure to the PFAS mixture enhanced glycolysis but inhibited phospholipid synthesis, and significantly increased the expression of lipid metabolism related genes (srebf1, acox, and pparα), which indicated enhanced β-oxidation. The significant changes in mitochondrial membrane potential, mitochondrial content, and the transcription of genes involved in the mitochondrial respiratory chain (mfn2, ndufs1, atp5fa1, and mt-nd1) and mitochondrial DNA replication and transcription (18rs-rrn, and polg1) suggested that exposure to the PFAS mixture could cause mitochondrial dysfunction and further disrupt glucose and lipid metabolic pathways, ultimately causing metabolic disorders in zebrafish larvae. These findings demonstrate the importance of assessing the metabolic effects of PFAS mixtures on early development in wildlife and humans.

摘要

一些全氟和多氟烷基物质(PFAS)已被证明与生物体内的代谢紊乱有关。然而,很少有研究考虑它们的联合效应,因为这些联合效应更能代表环境中存在的 PFAS。在这项研究中,斑马鱼胚胎在三个环境相关浓度下暴露于 18 种 PFAS 混合物中 5 天,以评估它们的生物累积和代谢后果。斑马鱼幼虫中∑PFAS 的负担在 0.5、5 和 50μg/L 处理组中分别为 0.12、1.58 和 9.63mg/kg。暴露于 PFAS 混合物加速了孵化和幼鱼的心率,增加了能量消耗,降低了 ATP 水平和葡萄糖含量,这是由于饲料摄入和葡萄糖摄取减少所致。代谢组学分析表明,暴露于 PFAS 混合物增强了糖酵解,但抑制了磷脂合成,并显著增加了与脂质代谢相关的基因(srebf1、acox 和 pparα)的表达,这表明β-氧化增强。线粒体膜电位、线粒体含量以及涉及线粒体呼吸链(mfn2、ndufs1、atp5fa1 和 mt-nd1)和线粒体 DNA 复制和转录(18rs-rrn 和 polg1)的基因转录的显著变化表明,暴露于 PFAS 混合物可能导致线粒体功能障碍,并进一步破坏葡萄糖和脂质代谢途径,最终导致斑马鱼幼虫代谢紊乱。这些发现表明,评估 PFAS 混合物对野生动物和人类早期发育的代谢影响非常重要。

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