Laboratory of Molecular Nutrition and Environmental Toxicology for Aquatic Economic Animals, Fishery College, Huazhong Agricultural University, Wuhan, 430070, China.
Diabetes and Nutritional Sciences Division, School of Medicine, King's College London, United Kingdom.
Environ Pollut. 2021 Aug 15;283:117079. doi: 10.1016/j.envpol.2021.117079. Epub 2021 Apr 5.
Oxytetracycline (OTC) and Cu are prevalent in aquatic ecosystems and their pollution are issues of serious concern. The present working hypothesis is that the toxicity of Cu and OTC mixture on physiological activity of fish was different from single OTC and Cu alone. The present study indicated that, compared to single OTC or Cu alone, Cu+OTC mixture reduced growth performance and feed utilization of grass carp, escalated the contents of Cu, OTC and TG, increased lipogenesis, induced oxidative stress, damaged the mitochondrial structure and functions and inhibited the lipolysis in the liver tissues and hepatocytes of grass carp. Cu+OTC co-treatment significantly increased the mRNA abundances and protein expression of Nrf2. Moreover, we found that Cu+OTC mixture-induced oxidative stress promoted Nrf2 recruitment to the SREBP-1 promoter and increased SREBP-1-mediated lipogenesis; Nrf2 sited at the crossroads of oxidative stress and lipid metabolism, and mediated the regulation of oxidative stress and lipid metabolism. Our findings clearly indicated that OTC and Cu mixture differed in environmental risks from single antibiotic or metal element itself, and thus posed different toxicological responses to aquatic animals. Moreover, our findings suggested that Nrf2 functioned as an important antioxidant regulator linking oxidative stress to lipogenic metabolism, and thus elucidated a novel regulatory mechanism for lipid metabolism.
土霉素(OTC)和铜在水生生态系统中普遍存在,其污染是一个严重关切的问题。目前的工作假设是,铜和 OTC 混合物对鱼类生理活性的毒性不同于单一的 OTC 和铜单独存在时的毒性。本研究表明,与单一的 OTC 或铜单独处理相比,Cu+OTC 混合物降低了草鱼的生长性能和饲料利用率,增加了铜、OTC 和 TG 的含量,促进了脂肪生成,诱导了氧化应激,破坏了线粒体的结构和功能,并抑制了草鱼肝脏组织和肝细胞中的脂肪分解。Cu+OTC 共同处理显著增加了 Nrf2 的 mRNA 丰度和蛋白表达。此外,我们发现,Cu+OTC 混合物诱导的氧化应激促进了 Nrf2 募集到 SREBP-1 启动子,并增加了 SREBP-1 介导的脂肪生成;Nrf2 位于氧化应激和脂质代谢的交汇点,调节氧化应激和脂质代谢。我们的研究结果清楚地表明,OTC 和铜混合物在环境风险方面与单一抗生素或金属元素本身不同,因此对水生动物表现出不同的毒理学反应。此外,我们的研究结果表明,Nrf2 作为一个重要的抗氧化调节剂,将氧化应激与脂肪生成代谢联系起来,从而阐明了脂质代谢的一个新的调节机制。