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水飞蓟宾通过调控 cGAS-STING 通路和内质网应激减轻阿维菌素诱导的鲤鱼呼吸氧化损伤。

Silybin attenuates avermectin-induced oxidative damage in carp respiration by modulating the cGAS-STING pathway and endoplasmic reticulum stress.

机构信息

Jiangsu Key Laboratory of Marine Bioresources and Environment, Co-Innovation Center of Jiangsu Marine Bio-industry Technology, Jiangsu Marine Pharmaceutical Resources Development Engineering Research Center, Jiangsu Key Laboratory of Marine Pharmaceutical Compound Screening, School of Pharmacy, Jiangsu Ocean University, Lianyungang, 222005, China.

Department of Technology, the First People's Hospital of Lianyungang, Lianyungang, 222002, China.

出版信息

Fish Physiol Biochem. 2024 Aug;50(4):1759-1775. doi: 10.1007/s10695-024-01368-9. Epub 2024 Jun 22.

Abstract

Avermectin is a commonly used insect repellent for aquaculture and crops, but it is easy to remain in the aquatic environment, causing organism disorders, inflammation, and even death. This resulted in significant economic losses to the carp aquaculture industry. Silybin has antioxidant, anti-inflammatory, and anti-apoptotic properties. However, it is unclear whether Silybin counteracts gill damage caused by avermectin exposure. Therefore, we modeled avermectin exposure and Silybin intervention by adding 2.404 μg/L avermectin to water and 400 mg/kg of Silybin to feed. Gill tissue was collected and analyzed in depth during a 30-day experimental period. The results showed that avermectin exposure induced structural disorganization of gill filaments and led to increased reactive oxygen species, inhibition of antioxidant functions, induction of inflammatory responses, and endoplasmic reticulum stress in addition to the endogenous apoptotic pathway. In contrast, Silybin effectively alleviated pathological changes and reduced reactive oxygen species levels, thereby attenuating oxidative stress and endogenous apoptosis and inhibiting endoplasmic reticulum stress pathways. In addition, Silybin reduced avermectin-induced gill tissue inflammation in carp, and it is considered that it might modulate the cGAS-STING pathway. In summary, Silybin alleviates avermectin-induced oxidative damage within the carp's respiratory system by modulating the cGAS-STING pathway and endoplasmic reticulum stress. The main goal is to understand how Silybin reduces oxidative damage caused by avermectin in carp gills, offering management strategies. Concurrently, the current study proposes that Silybin can serve as a dietary supplement to reduce the risks brought on by repellent buildup in freshwater aquaculture.

摘要

阿维菌素是一种常用于水产养殖和农作物的驱虫剂,但它很容易残留在水生态环境中,导致生物机能紊乱、炎症甚至死亡,从而给鲤鱼养殖业造成巨大的经济损失。水飞蓟宾具有抗氧化、抗炎和抗细胞凋亡的特性。然而,水飞蓟宾是否能对抗阿维菌素暴露引起的鳃损伤尚不清楚。因此,我们通过在水中添加 2.404μg/L 的阿维菌素和饲料中添加 400mg/kg 的水飞蓟宾来模拟阿维菌素暴露和水飞蓟宾干预,在 30 天的实验期间深入收集和分析鳃组织。结果表明,阿维菌素暴露导致鳃丝结构紊乱,增加活性氧,抑制抗氧化功能,诱导炎症反应和内质网应激,同时激活内源性凋亡途径。相比之下,水飞蓟宾能有效缓解病理变化,降低活性氧水平,从而减轻氧化应激和内源性凋亡,抑制内质网应激途径。此外,水飞蓟宾降低了鲤鱼鳃组织中阿维菌素诱导的炎症,表明它可能通过调节 cGAS-STING 通路来发挥作用。总之,水飞蓟宾通过调节 cGAS-STING 通路和内质网应激来减轻鲤鱼呼吸系统中阿维菌素引起的氧化损伤。本研究旨在了解水飞蓟宾如何减轻鲤鱼鳃组织中阿维菌素引起的氧化损伤,为水产养殖管理提供策略。同时,本研究提出水飞蓟宾可以作为一种膳食补充剂,以减少淡水水产养殖中驱虫剂残留带来的风险。

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