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双酚S(BPS)对条纹鳢生殖系统毒性的评估:环境风险评估的见解

Evaluation of Bisphenol S (BPS) toxicity on the reproductive system of Channa striatus: Insights for environmental risk assessment.

作者信息

Mohan Sini, Surendran Siju, Malini N A, George K Roy

机构信息

Post-Graduate and Research Department of Zoology, St. Thomas College Kozhencherry, Kerala 689 641, India.

Centre for Neuoroscience, Indian Institute of Science, Bangalore, India.

出版信息

Reprod Toxicol. 2024 Dec;130:108690. doi: 10.1016/j.reprotox.2024.108690. Epub 2024 Aug 22.

Abstract

Aquatic ecosystems face significant exposure to endocrine-disrupting chemicals (EDCs), which can mimic, block, or alter the synthesis of endogenous hormones. Bisphenol A (BPA), a widely known EDC, has been phased out from consumer products due to concerns about its potential impacts on human health. In its place, bisphenol S (BPS), an organic compound, has been increasingly used in the production of polycarbonate plastics, epoxy resins, thermal receipt papers, and currency. Vitellogenin (Vtg), a yolk precursor protein synthesized in the liver and present in oviparous fish, particularly males, serves as a pertinent biomarker for studying the effects of estrogenic EDCs on fish. This study aimed to assess the impact of BPS on reproductive parameters and hepatic vitellogenin expression in Channa striatus. The LC50 of BPS was determined to be 128.8 mg/L. Experimental groups included control and BPS-exposed fish, with sub-lethal concentrations of BPS (1 mg/L, 4 mg/L, and 12 mg/L) administered and effects monitored at seven- and twenty-one-day intervals. Significant decreases in gonadosomatic index (GSI), ova diameter, and fecundity were observed in BPS-exposed Channa striatus. Hepatic Vtg mRNA expression was downregulated in female and upregulated in male following BPS exposure. Serum hormone analysis confirmed the estrogenic activity of BPS. These findings underscore BPS's ability as an endocrine disruptor to interfere with hormone synthesis and disrupt spermatogenesis and oogenesis processes in Channa striatus. This research contributes to understanding the endocrine-disrupting effects of BPS on aquatic organisms, highlighting potential ecological implications and the need for continued monitoring and regulatory considerations.

摘要

水生生态系统面临着内分泌干扰化学物质(EDCs)的大量暴露,这些物质能够模拟、阻断或改变内源性激素的合成。双酚A(BPA)是一种广为人知的内分泌干扰物,由于担心其对人类健康的潜在影响,已从消费品中逐步淘汰。取而代之的是有机化合物双酚S(BPS),它越来越多地用于聚碳酸酯塑料、环氧树脂、热敏收银纸和货币的生产中。卵黄蛋白原(Vtg)是一种在肝脏中合成、存在于卵生鱼类(尤其是雄性)中的卵黄前体蛋白,是研究雌激素类内分泌干扰物对鱼类影响的相关生物标志物。本研究旨在评估双酚S对条纹鳢生殖参数和肝脏卵黄蛋白原表达的影响。双酚S的半数致死浓度(LC50)被确定为128.8毫克/升。实验组包括对照组和暴露于双酚S的鱼类,分别给予亚致死浓度的双酚S(1毫克/升、4毫克/升和12毫克/升),并在7天和21天的间隔时间监测其影响。在暴露于双酚S的条纹鳢中,观察到性腺指数(GSI)、卵径和繁殖力显著下降。双酚S暴露后,雌性肝脏Vtg mRNA表达下调,雄性上调。血清激素分析证实了双酚S的雌激素活性。这些发现强调了双酚S作为内分泌干扰物干扰条纹鳢激素合成以及破坏精子发生和卵子发生过程的能力。这项研究有助于了解双酚S对水生生物的内分泌干扰作用,突出了潜在的生态影响以及持续监测和监管考量的必要性。

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