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非致死性生物标志物作为鱼类健康评估的有前途工具:以双丙环虫酯原位暴露为例。

Non-lethal biomarkers as promising tools for fish health assessment: In situ exposure to bifenthrin as a case study.

机构信息

Instituto Nacional de Limnología, CONICET, UNL, Santa Fe, Argentina; Paraje El Pozo, Ciudad Universitaria UNL, Santa Fe 3000, Argentina.

Instituto Nacional de Limnología, CONICET, UNL, Santa Fe, Argentina; Paraje El Pozo, Ciudad Universitaria UNL, Santa Fe 3000, Argentina; Facultad de Humanidades y Ciencias, UNL, Paraje El Pozo, Ciudad Universitaria UNL, Santa Fe 3000, Argentina.

出版信息

Aquat Toxicol. 2024 Nov;276:107083. doi: 10.1016/j.aquatox.2024.107083. Epub 2024 Sep 5.

Abstract

Non-lethal biomonitoring should provide an innovative approach to establish bioethical protocols for the management of both aquaculture and wild fisheries resources. We aimed to assess non-lethal biomarkers in Piaractus mesopotamicus caged in a rice field during a bifenthrin (BF) application. We analyzed parameters related to the immune system, energy metabolism and oxidative stress in fish skin mucus and blood plasma. Fish exposed to BF showed a significant increase in skin mucus glucose levels and the enzymatic activities of protease, alkaline phosphatase and superoxide dismutase. Regarding plasmatic parameters, BF increased the levels of glucose, total protein and albumin, but decreased triglycerides. In addition, increased activities of lysozyme and alkaline phosphatase were found in the blood plasma of exposed fish. Our results indicated an increased energy demand, altered immune function and a mild oxidative stress response in fish exposed in situ to BF. We have shown that skin mucus and blood plasma are very promising matrices for the development of non-lethal biomarkers to assess fish health in a stressed environment.

摘要

非致死性生物监测应为水产养殖和野生渔业资源管理制定生物伦理协议提供一种创新方法。本研究旨在评估稻田养殖条件下双丙环虫酯(BF)暴露对鱠(Piaractus mesopotamicus)非致死性生物标志物的影响。我们分析了鱼类皮肤黏液和血浆中与免疫系统、能量代谢和氧化应激相关的参数。结果表明,BF 暴露组鱼皮肤黏液中葡萄糖水平和蛋白酶、碱性磷酸酶和超氧化物歧化酶活性显著升高。就血浆参数而言,BF 增加了葡萄糖、总蛋白和白蛋白的水平,但降低了甘油三酯的水平。此外,暴露组鱼血液中的溶菌酶和碱性磷酸酶活性也有所增加。这些结果表明,BF 暴露导致鱼体内能量需求增加,免疫功能改变和轻度氧化应激反应。我们已经证明,皮肤黏液和血浆是非常有前途的基质,可以开发非致死性生物标志物来评估处于胁迫环境中的鱼类健康状况。

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