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草鱼共同暴露于环境相关浓度的氯氰菊酯和磺胺甲恶唑下,具有免疫缺陷,容易受到随后的嗜水气单胞菌感染。

Grass carps co-exposed to environmentally relevant concentrations of cypermethrin and sulfamethoxazole bear immunodeficiency and are vulnerable to subsequent Aeromonas hydrophila infection.

机构信息

College of Wildlife and Protected Area, Northeast Forestry University, Harbin, 150040, Heilongjiang, PR China; Department of Ecology, College of Wildlife and Protected Area, Northeast Forestry University, Harbin, 150040, Heilongjiang, PR China.

College of Wildlife and Protected Area, Northeast Forestry University, Harbin, 150040, Heilongjiang, PR China.

出版信息

Environ Pollut. 2020 Nov;266(Pt 3):115156. doi: 10.1016/j.envpol.2020.115156. Epub 2020 Jul 7.

Abstract

The aquatic ecosystem is seriously damaged because of the heavy use of pesticides and antibiotics. Fish is the indispensable link between environmental pollution and human health. However, the toxic effects of environment-related concentrations of pesticides and antibiotics in fish have not been thoroughly studied. In this study, grass carps exposed to cypermethrin (CMN, 0.651 μg/L) or/and sulfamethoxazole (SMZ, 0.3 μg/L) for 42 days caused oxidative stress, apoptosis and immunodeficiency in the spleen of grass carps. CMN or/and SMZ exposure led to oxidative damage (consumption of antioxidant enzymes (superoxide dismutase and catalase)) and lipid peroxidation (accumulation of malondialdehyde), induced apoptosis (increases in TUNEL index, Bax/bcl-2, p53, puma and Caspase family expression). In addition, the levels of immunoglobulin M (IgM), complement 3 (C3) were significantly decreased in all treatment groups, which trend was also found in C-reactive protein in CMN and MIX group, and lysozyme in MIX group. Transcription of almost all genes involved in the Toll-like receptors (TLR) signaling pathway was up-regulated under CMN or/and SMZ exposure. However, when subsequently attacked by Aeromonas hydrophila for 2 days, the TLR pathway was inhibited in spleens of all treatment groups accompanied by higher mortality. Overall, the environmentally relevant concentration of CMN and SMZ damages the immune system, triggering oxidative stress and apoptosis in carps. And by affecting the conduction of TLR signaling pathway, CMN or/and SMZ exposure inhibits the innate immune response of fish and reducing their disease resistance. This study highlights the importance of rational and regulated use of these pesticides and antibiotics.

摘要

由于大量使用农药和抗生素,水生生态系统受到严重破坏。鱼类是环境污染与人类健康之间不可或缺的联系。然而,鱼类环境相关浓度的农药和抗生素的毒性作用尚未得到彻底研究。在这项研究中,暴露于氯氰菊酯(CMN,0.651μg/L)或/和磺胺甲恶唑(SMZ,0.3μg/L)中的草鱼在 42 天内导致草鱼脾脏氧化应激、细胞凋亡和免疫功能障碍。CMN 或/和 SMZ 暴露导致氧化损伤(抗氧化酶(超氧化物歧化酶和过氧化氢酶)消耗)和脂质过氧化(丙二醛积累),诱导细胞凋亡(TUNEL 指数、Bax/bcl-2、p53、puma 和 Caspase 家族表达增加)。此外,所有处理组的免疫球蛋白 M(IgM)和补体 3(C3)水平均显著降低,CMN 和 MIX 组的 C-反应蛋白和 MIX 组的溶菌酶也呈这种趋势。在 CMN 或/和 SMZ 暴露下,几乎所有参与 Toll 样受体(TLR)信号通路的基因的转录都被上调。然而,当随后受到嗜水气单胞菌攻击 2 天后,所有处理组的 TLR 通路均被抑制,伴随着更高的死亡率。总的来说,环境相关浓度的 CMN 和 SMZ 会损害免疫系统,在鱼类中引发氧化应激和细胞凋亡。并且通过影响 TLR 信号通路的传导,CMN 或/和 SMZ 暴露会抑制鱼类的先天免疫反应,降低其抗病能力。本研究强调了合理、有节制地使用这些农药和抗生素的重要性。

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