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土霉素诱导大口黑鲈(Micropterus salmoides)线粒体动力学紊乱和抗氧化酶损伤导致的氧化肝损伤。

Oxytetracycline-induced oxidative liver damage by disturbed mitochondrial dynamics and impaired enzyme antioxidants in largemouth bass (Micropterus salmoides).

机构信息

College of Animal Science and Technology, Sichuan Agricultural University, Chengdu 611130, China.

College of Animal Science and Technology, Sichuan Agricultural University, Chengdu 611130, China;.

出版信息

Aquat Toxicol. 2023 Aug;261:106616. doi: 10.1016/j.aquatox.2023.106616. Epub 2023 Jun 17.

Abstract

Oxytetracycline (OTC), a commonly used tetracycline antibiotic in aquaculture, has been found to cause significant damage to the liver of largemouth bass (Micropterus salmoides). This study revealed that OTC can lead to severe histopathological damage, structural changes at the cellular level, and increased levels of reactive oxygen species (ROS) in M. salmoides. Meanwhile, OTC impairs the activities of antioxidant enzyme (such as T-SOD, CAT, GST, GR) by suppressing the activation of MAPK/Nrf2 pathway. OTC disrupts mitochondrial dynamics and mitophagy through via PINK1/Parkin pathway. The accumulation of damaged mitochondria, combined with the inhibition of the antioxidant enzyme system, contributes to elevated ROS levels and oxidative liver damage in M. salmoides. Further investigations demonstrated that an enzyme-treated soy protein (ETSP) dietary supplement can help maintain mitochondrial dynamic balance by inhibiting the PINK1/Parkin pathway and activate the MAPK/Nrf2 pathway to counteract oxidative damage. In summary, these findings highlight that exposure to OTC disrupts mitochondrial dynamics and inhibits the antioxidant enzyme system, ultimately exacerbating oxidative liver damage in M. salmoides. We propose the use of a dietary supplement as a preventive measure against OTC-related side effects, providing valuable insights into the mechanisms of antibiotic toxicity in aquatic environments.

摘要

土霉素(OTC)是水产养殖中常用的四环素类抗生素,已被发现对大口黑鲈(Micropterus salmoides)的肝脏造成严重损害。本研究表明,OTC 可导致严重的组织病理学损伤、细胞水平的结构变化和活性氧物种(ROS)水平升高。同时,OTC 通过抑制 MAPK/Nrf2 通路的激活,抑制抗氧化酶(如 T-SOD、CAT、GST、GR)的活性。OTC 通过 PINK1/Parkin 通路破坏线粒体动力学和线粒体自噬。受损线粒体的积累,加上抗氧化酶系统的抑制,导致 ROS 水平升高和大口黑鲈氧化肝损伤。进一步的研究表明,一种酶处理的大豆蛋白(ETSP)膳食补充剂可以通过抑制 PINK1/Parkin 通路和激活 MAPK/Nrf2 通路来帮助维持线粒体动态平衡,从而抵抗氧化损伤。总之,这些发现强调了暴露于 OTC 会破坏线粒体动力学并抑制抗氧化酶系统,最终加剧大口黑鲈的氧化肝损伤。我们建议使用膳食补充剂作为预防 OTC 相关副作用的措施,为水生环境中抗生素毒性的机制提供了有价值的见解。

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