College of Biological and Chemical Engineering, Changsha University, Changsha 410022, PR China; Hunan Engineering Technology Research Center for Amphibian and Reptile Resource Protection and Product Processing, Changsha 410022, PR China.
College of Biological and Chemical Engineering, Changsha University, Changsha 410022, PR China; Hunan Engineering Technology Research Center for Amphibian and Reptile Resource Protection and Product Processing, Changsha 410022, PR China.
Ecotoxicol Environ Saf. 2024 Sep 15;283:116863. doi: 10.1016/j.ecoenv.2024.116863. Epub 2024 Aug 10.
Cadmium (Cd) is a toxic heavy metal pollutant in the environment. Excessive Cd in water has toxic effects on fish, endangering their healthy growth and ultimately affecting the quality and safety of aquatic products. To evaluate the toxicity of excessive Cd to fish through potential oxidative damage, Siniperca chuatsi was exposed to Cd in water for 15 days. It was found that Cd exposure significantly decreased the survival rate of S. chuatsi and Cd was detected in their muscle. Meanwhile, Cd disrupts the redox balance by reducing antioxidant enzyme activities, increasing reactive oxygen species (ROS) and malondialdehyde (MDA) levels in muscle, and promoting oxidative damage. Histomorphology showed that enlargement of muscle fiber gaps, cell swelling and vacuolar degeneration after Cd exposure. In addition, Cd toxicity induced up-regulating the expression of miR-216a, while down-regulation of Nrf2 protein and its downstream antioxidant enzyme genes expression. Further analysis revealed that miR-216a was significantly negatively correlated with the expression of Nrf2, and injection of miR-216a antagomir significantly enhanced the expression of Nrf2 and antioxidant enzyme genes, as well as the activity of antioxidant enzymes, thereby reducing the damage of Cd to fish. These results suggested that miR-216a-mediated Nrf2 signaling pathway plays an important role in Cd-induced oxidative stress of S. chuatsi muscle.
镉(Cd)是环境中有毒的重金属污染物。水中过量的镉对鱼类具有毒性作用,危及它们的健康生长,最终影响水产品的质量和安全。为了通过潜在的氧化损伤评估过量镉对鱼类的毒性,将翘嘴红鲌暴露在水中的镉中 15 天。结果发现,镉暴露显著降低了翘嘴红鲌的存活率,并在其肌肉中检测到镉。同时,镉通过降低抗氧化酶活性、增加肌肉中活性氧(ROS)和丙二醛(MDA)水平来破坏氧化还原平衡,从而促进氧化损伤。组织形态学显示,镉暴露后肌肉纤维间隙扩大,细胞肿胀和空泡变性。此外,镉毒性诱导 miR-216a 的表达上调,同时下调 Nrf2 蛋白及其下游抗氧化酶基因的表达。进一步分析表明,miR-216a 与 Nrf2 的表达呈显著负相关,注射 miR-216a 拮抗剂可显著增强 Nrf2 和抗氧化酶基因的表达以及抗氧化酶的活性,从而减轻 Cd 对鱼类的损伤。这些结果表明,miR-216a 介导的 Nrf2 信号通路在 Cd 诱导的翘嘴红鲌肌肉氧化应激中起重要作用。