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锌吡硫翁(ZPT)暴露对斑马鱼精子和睾丸损伤的毒性作用及潜在机制。

Toxic effects and potential mechanisms of zinc pyrithione (ZPT) exposure on sperm and testicular injury in zebrafish.

机构信息

School of Pharmaceutical Sciences, Nanjing Tech University, Nanjing 211816, China.

School of Pharmaceutical Sciences, Nanjing Tech University, Nanjing 211816, China.

出版信息

J Hazard Mater. 2024 Jan 5;461:132575. doi: 10.1016/j.jhazmat.2023.132575. Epub 2023 Sep 19.

Abstract

Zinc pyrithione (ZPT) is widely recognized for its beneficial properties as an antifouling, antibacterial, and antifungal agent. Despite its positive industrial contributions, ZPT has been proven to exhibit toxicity towards various ecosystems, particularly affecting marine life. However, there is still a dearth of comprehensive research on ZPT toxicity and its toxicological mechanism in reproductive systems of aquatic organisms. In our study, we conducted a thorough analysis and unveiled a multitude of abnormalities in zebrafish sperm and testicular tissue caused by ZPT exposure, including a dose-dependent diminishing of testosterone levels, various sperm deformities, decreased sperm concentration and motility, and ROS-induced testicular tissue DNA damage. In addition, our study suggested that ZPT-induced testicular damage is associated with heightened oxidative stress, apoptosis, and possible hyperpolarization of the mitochondrial membrane. Through RNA-seq analysis, a total of 409 DEGs associated with ZPT-induced testicular injury were identified, and the hub gene was determined using a protein-protein interaction network (PPI). The genes and pathways uncovered in this study point to potential mechanisms of ZPT exposure on sperm and testicular injury in zebrafish.

摘要

吡啶硫酮锌 (ZPT) 作为一种具有抗污、抗菌和抗真菌特性的物质而被广泛认可。尽管 ZPT 在工业上有积极的贡献,但已被证明对各种生态系统具有毒性,特别是对海洋生物有影响。然而,目前对于 ZPT 在水生生物生殖系统中的毒性及其毒理学机制的综合研究仍然不足。在我们的研究中,我们对 ZPT 暴露导致的斑马鱼精子和睾丸组织的多种异常进行了深入分析,包括睾酮水平的剂量依赖性下降、各种精子畸形、精子浓度和活力降低以及 ROS 诱导的睾丸组织 DNA 损伤。此外,我们的研究表明,ZPT 引起的睾丸损伤与氧化应激、细胞凋亡增加以及线粒体膜可能的超极化有关。通过 RNA-seq 分析,共鉴定出 409 个与 ZPT 诱导的睾丸损伤相关的差异表达基因,并使用蛋白质-蛋白质相互作用网络 (PPI) 确定了枢纽基因。本研究中揭示的基因和途径指出了 ZPT 暴露对斑马鱼精子和睾丸损伤的潜在机制。

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