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首页> 外文期刊>Metallomics. integrated biometal science >Unravelling the mechanisms of mercury hepatotoxicity in wild fish (Liza aurata) through a triad approach: bioaccumulation, metabolomic profiles and oxidative stress
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Unravelling the mechanisms of mercury hepatotoxicity in wild fish (Liza aurata) through a triad approach: bioaccumulation, metabolomic profiles and oxidative stress

机译:通过三元组方法揭示野生鱼(利扎a鱼)中汞肝毒性的机制:生物蓄积,代谢组学特征和氧化应激

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Clarification of the mechanisms of mercury (Hg) toxicity in fish remains challenging. An innovative approach to this clarification is the combined assessment of metabolomic shifts, alterations in the antioxidant system and the risk of oxidative damage, and Hg bioaccumulation. This strategy was applied to the livers of golden grey mullet (Liza aurata) inhabiting an Hg-contaminated system in Aveiro Lagoon, Portugal. Marked changes in both the metabolic profile and the response to antioxidants were observed in fish exposed to Hg in the environment, indicating their compromised state of health. The metabolomics analysis showed a clear differentiation between the contaminated and uncontaminated areas, revealing that Hg has multiple levels of impact, including membrane stabilization/degradation/repair processes, osmoregulation, energy metabolism, gene expression and antioxidant protection. Research on oxidative stress biomarkers showed that Hg triggered adaptive responses in the antioxidant system as seen by an increase in the activities of glutathione-S-transferase and catalase, as well as the total glutathione content, which compensated for a decrease in glutathione peroxidase activity. The integration of metabolomics and oxidative stress endpoints allowed the identification of reduced glutathione as a first line of defence against Hg and evidenced oxidative insults in cell membranes, recognized through the increase in phosphatidylcholine degradation products (phosphocholine and glycerophosphocholine). Despite these effects, the induction of lipid peroxidation was efficiently prevented. The triad approach used here was demonstrated to be sensitive and effective towards a mechanistically based assessment of Hg hepatotoxicity in fish.
机译:澄清鱼类中汞(Hg)毒性的机制仍然具有挑战性。解决这一问题的一种创新方法是综合评估代谢组学变化,抗氧化剂系统的变化和氧化损伤的风险以及汞的生物蓄积。该策略应用于在葡萄牙阿威罗泻湖中居住着汞污染系统的金golden鱼肝脏(Liza aurata)。在环境中暴露于汞的鱼体内,其代谢特征和对抗氧化剂的反应均发生了明显变化,表明它们的健康状况受到损害。代谢组学分析表明,受污染和未受污染的区域之间存在明显的区别,表明汞具有多种影响水平,包括膜稳定/降解/修复过程,渗透调节,能量代谢,基因表达和抗氧化保护。氧化应激生物标记物的研究表明,Hg触发了抗氧化剂系统的适应性反应,这是由谷胱甘肽S-转移酶和过氧化氢酶活性的增加以及总谷胱甘肽含量增加所弥补的,弥补了谷胱甘肽过氧化物酶活性的下降。代谢组学和氧化应激终点的整合使人们可以将还原型谷胱甘肽鉴定为对抗Hg的第一道防线,并证明了细胞膜氧化损伤,这是通过磷脂酰胆碱降解产物(磷酸胆碱和甘油磷酸胆碱)的增加而认识到的。尽管有这些作用,仍有效地防止了脂质过氧化的诱导。事实证明,此处使用的三合一方法对基于机械的鱼类汞肝毒性评估是灵敏有效的。

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