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铜锌合金暴露后刺激隐核虫中诱导铜中毒的脂质变化和分子机制。

Lipid changes and molecular mechanism inducing cuproptosis in Cryptocaryon irritans after copper-zinc alloy exposure.

机构信息

National Demonstration Center for Experimental (Aquaculture) Education, School of Marine Sciences, Ningbo University, 169 South Qixing Road, Ningbo 315832, PR China.

National Demonstration Center for Experimental (Aquaculture) Education, School of Marine Sciences, Ningbo University, 169 South Qixing Road, Ningbo 315832, PR China.

出版信息

Pestic Biochem Physiol. 2024 Feb;199:105756. doi: 10.1016/j.pestbp.2023.105756. Epub 2023 Dec 22.

Abstract

Cryptocaryons irritans is a ciliate parasite responsible for cryptocaryoniasis, leading to considerable economic losses in aquaculture. It is typically managed using a copper-zinc alloy (CZA), effectively diminishing C. irritans infection rates while ensuring the safety of aquatic organisms. Nevertheless, the precise mechanism underlying cuproptosis induced C. irritans mortality following exposure to CZA remains enigmatic. Therefore, this study delves into assessing the efficacy of CZA, investigate cuproptosis as a potential mechanism of CZA action against C. irritans, and determine the alterations in antioxidant enzymes, peroxidation, and lipid metabolism. The mRNA expression of dihydrolipoamide S-acetyltransferase was upregulated after 40 and 70 min, while aconitase 1 was implicated in cuproptosis following 70 min of CZA exposure. Furthermore, the relative mRNA levels of glutathione reductase experienced a significant increase after 40 and 70 min of CZA exposure. In contrast, the relative mRNA levels of glutathione S-transferase and phospholipid-hydroperoxide glutathione peroxidase were significantly decreased after 70 min, suggesting a disruption in antioxidant defense and an imbalance in copper ions. Lipidomics results also unveiled an elevation in glycerophospholipids metabolism and the involvement of the lipoic acid pathway, predominantly contributing to cuproptosis. In summary, exposure to CZA induces cuproptosis in C. irritans, impacts glutathione-related enzymes, and alters glycerophospholipids, consequently triggering lipid oxidation.

摘要

Cryptoaryon irritans 是一种纤毛虫寄生虫,负责引起 Cryptoaryoniasis,给水产养殖业造成了相当大的经济损失。通常使用铜锌合金 (CZA) 来管理这种寄生虫,有效地降低了 C. irritans 的感染率,同时确保了水生生物的安全。然而,暴露于 CZA 后,铜死亡诱导的 C. irritans 死亡率的精确机制仍然是个谜。因此,本研究深入评估了 CZA 的功效,探讨了铜死亡作为 CZA 对抗 C. irritans 的潜在机制,并确定了抗氧化酶、过氧化和脂质代谢的变化。暴露于 CZA 70 分钟后,二氢硫辛酰胺 S-乙酰转移酶的 mRNA 表达上调,而 70 分钟后, aconitase 1 被认为与铜死亡有关。此外,暴露于 CZA 40 分钟和 70 分钟后,谷胱甘肽还原酶的相对 mRNA 水平显著增加。相比之下,暴露于 CZA 70 分钟后,谷胱甘肽 S-转移酶和磷脂氢过氧化物谷胱甘肽过氧化物酶的相对 mRNA 水平显著下降,表明抗氧化防御系统受到破坏和铜离子失衡。脂质组学结果还揭示了甘油磷脂代谢的升高和硫辛酸途径的参与,这主要导致了铜死亡。总之,暴露于 CZA 会引起 C. irritans 的铜死亡,影响谷胱甘肽相关酶,并改变甘油磷脂,从而引发脂质氧化。

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