Guangzhou Key Laboratory of Subtropical Biodiversity and Biomonitoring, School of Life Sciences, South China Normal University, Guangdong Provincial Key Laboratory for Healthy and Safe Aquaculture, Guangdong Provincial Engineering Technology Research Center for Environmentally-Friendly Aquaculture, Guangzhou, 510631, China.
Guangzhou Key Laboratory of Subtropical Biodiversity and Biomonitoring, School of Life Sciences, South China Normal University, Guangdong Provincial Key Laboratory for Healthy and Safe Aquaculture, Guangdong Provincial Engineering Technology Research Center for Environmentally-Friendly Aquaculture, Guangzhou, 510631, China; Guangdong Laboratory for Lingnan Modern Agriculture, Guangzhou, 510642, China.
Aquat Toxicol. 2022 Mar;244:106100. doi: 10.1016/j.aquatox.2022.106100. Epub 2022 Jan 23.
Copper (Cu), as an essential micronutrient in human and animal metabolism, easily spreads and excessively accumulates in rearing water, which make it more susceptible to fish farms and threatens the health of aquatic animals. In this issue, the protective effect of vitamin C against oxidative damage caused by copper exposure was studied in monocytes/macrophages (MO/MФ) and IgM B cells of Nile tilapia (Oreochromis niloticus), the cell types possessing phagocytic activities. The significant increase of ROS level and up-regulation of proinflammatory factors accompanied by depletion of GSH and down-regulation of antioxidative molecules in MO/MФ and IgM B cells, when stressed with CuO NPs or Cu ions, indicated the induction of oxidative damage due to the toxicological effects with copper exposure. Copper induced cell apoptosis through mitochondrial-dependent pathway in these two cell populations was demonstrated with disruption of mitochondrial membrane potential (ΔΨm) and activation of apoptosis factor. Furthermore, the phagocytic abilities for microspheres and bioparticle uptake significantly decreased in these two cell populations upon CuO NPs or Cu ions; meanwhile, antigen presentation of MO/MФ and antibody production of IgM B cells were also inhibited. However, vitamin C supplementation reversed all these biochemical indices, as well as cell apoptosis and phagocytic abilities in MO/MФ and IgM B cells that were induced by CuO NPs or Cu ions. In conclusion, these results revealed that vitamin C exerts cytoprotective effects against oxidative damage through its antioxidant properties and may be of therapeutic use in preventing toxicological effects caused by copper exposure.
铜 (Cu) 作为人类和动物新陈代谢中的必需微量元素,很容易在养殖水中扩散和过度积累,这使得它更容易受到鱼类养殖场的影响,并威胁到水生动物的健康。在本期研究中,研究人员研究了维生素 C 对铜暴露引起的氧化损伤的保护作用,研究对象为罗非鱼(Oreochromis niloticus)的单核细胞/巨噬细胞(MO/MФ)和 IgM B 细胞,这两种细胞类型都具有吞噬活性。当用 CuO NPs 或 Cu 离子处理 MO/MФ 和 IgM B 细胞时,细胞内 ROS 水平显著升高,促炎因子上调,同时 GSH 耗竭,抗氧化分子下调,表明铜暴露的毒理学效应导致氧化损伤。铜通过两种细胞群体中线粒体依赖性途径诱导细胞凋亡,表现为线粒体膜电位 (ΔΨm) 破坏和凋亡因子激活。此外,在这两种细胞群体中,CuO NPs 或 Cu 离子显著降低了对微球和生物颗粒的吞噬能力;同时,MO/MФ 的抗原呈递和 IgM B 细胞的抗体产生也受到抑制。然而,维生素 C 的补充逆转了所有这些生化指标,以及 CuO NPs 或 Cu 离子诱导的 MO/MФ 和 IgM B 细胞中的细胞凋亡和吞噬能力。总之,这些结果表明,维生素 C 通过其抗氧化特性发挥细胞保护作用,对抗氧化损伤,并可能在预防铜暴露引起的毒性作用方面具有治疗用途。