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双酚 F 诱导斑马鱼的肝肠改变。

Bisphenol F induces liver-gut alteration in zebrafish.

机构信息

Institute of Quality Standard and Testing Technology for Agro-Products, Chinese Academy of Agricultural Sciences, Beijing, China; Fishery Resource and Environment Research Center, Chinese Academy of Fishery Sciences, Beijing, China.

Institute of Apicultural Research, Chinese Academy of Agricultural Sciences, Beijing, China.

出版信息

Sci Total Environ. 2022 Dec 10;851(Pt 1):157974. doi: 10.1016/j.scitotenv.2022.157974. Epub 2022 Aug 11.

Abstract

The unease of consumers with bisphenol A has led to the increased industrial usage of bisphenol F (BPF), which is a new hazard to environmental health. Here, zebrafish were exposed to three BPF concentrations (0.5, 5, and 50 μg/L) from the embryonic stage for 180 days. Results showed that zebrafish body length and weight decreased and hepatosomatic index values increased, even at environmentally relevant concentration. Histological analysis identified the occurrence of hepatic fibrosis and steatosis in 5 and 50 μg/L groups, which indicated the liver injury caused by BPF. Based on the untargeted metabolomics results, a dose-dependent variation in the effects of BPF on liver metabolism was found, and amino acids, purines and one carbon metabolism were the main affected processes in the 0.5, 5, and 50 μg/L treatments, respectively. At the same time, BPF induced a shift in intestinal microbiome composition, including decreased abundance of Erysipelotrichaceae, Rhodobacteraceae and Gemmobacter. In addition, the correlation analysis suggested an association between gut microbiome changes and affected hepatic metabolites after BPF exposure. These findings indicate that a liver-gut alteration is induced by long-term BPF exposure.

摘要

消费者对双酚 A 的担忧导致了双酚 F(BPF)在工业上的使用增加,这对环境健康构成了新的危害。在这里,斑马鱼从胚胎期开始暴露于三种 BPF 浓度(0.5、5 和 50μg/L)180 天。结果表明,斑马鱼体长和体重下降,肝体比指数值增加,即使在环境相关浓度下也是如此。组织学分析在 5μg/L 和 50μg/L 组中发现了肝纤维化和脂肪变性的发生,这表明 BPF 引起了肝损伤。基于非靶向代谢组学结果,发现 BPF 对肝脏代谢的影响呈剂量依赖性变化,在 0.5μg/L、5μg/L 和 50μg/L 处理中,分别是氨基酸、嘌呤和一碳代谢是主要受影响的过程。同时,BPF 诱导了肠道微生物组组成的变化,包括红杆菌科、Erysipelotrichaceae 和 Gemmobacter 的丰度降低。此外,相关性分析表明,BPF 暴露后肠道微生物组的变化与受影响的肝代谢物之间存在关联。这些发现表明,长期 BPF 暴露会引起肝-肠改变。

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