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揭示通过跨物种组学规模分析与银纳米颗粒诱导的不良结局途径相关的潜在趋同关键事件。

Unveiling potentially convergent key events related to adverse outcome pathways induced by silver nanoparticles via cross-species omics-scale analysis.

机构信息

College of Pharmacy, Seoul National University, Seoul 08826, the Republic of Korea.

Department of Life Sciences, Pohang University of Science and Technology, Pohang 37673, the Republic of Korea.

出版信息

J Hazard Mater. 2023 Oct 5;459:132208. doi: 10.1016/j.jhazmat.2023.132208. Epub 2023 Aug 2.

Abstract

The adverse effects of silver nanoparticles (AgNPs) have been studied in various models. However, there has been discordance between molecular responses across the literature, attributed to methodological biases and the physicochemical variability of AgNPs. In this study, a gene pathway meta-analysis was conducted to identify convergent and divergent key events (KEs) associated with AgNPs and explore common patterns of these KEs across species. We performed a cross-species analysis of transcriptomic data from multiple studies involving various AgNPs exposure. Pathway enrichment analysis revealed a set of pathways linked to oxidative stress, apoptosis, and metabolite and lipid metabolism, which are considered potentially conserved KEs across species. Subsequently, experiments confirmed that oxidative stress responses could be early KEs in both Caenorhabditis elegans and HepG2 cells. Moreover, AgNPs preferentially impaired the mitochondria, as evidenced by mitochondrial fragmentation and dysfunction. Furthermore, disruption of amino acids, nucleotides, sulfur compounds, glycerolipids, and glycerophospholipids metabolism were in good agreement with gene pathway shreds of evidence. Our findings imply that, although there may be organism-specific responses, potentially conserved events could exist regardless of species and physicochemical factors. These results provide valuable insights into the development of adverse outcome pathways of AgNPs across species and the regulatory toxicity of AgNPs.

摘要

纳米银颗粒(AgNPs)的不良影响已在各种模型中进行了研究。然而,由于方法学偏差和 AgNPs 的物理化学可变性,文献中的分子反应之间存在不一致性。在这项研究中,进行了基因途径荟萃分析,以确定与 AgNPs 相关的趋同和发散关键事件(KEs),并探索这些 KEs 在物种间的常见模式。我们对涉及多种 AgNPs 暴露的多个研究的转录组数据进行了跨物种分析。途径富集分析揭示了一组与氧化应激、细胞凋亡以及代谢物和脂质代谢相关的途径,这些途径被认为是物种间潜在保守的 KEs。随后的实验证实,氧化应激反应可能是秀丽隐杆线虫和 HepG2 细胞中的早期 KEs。此外,AgNPs 优先损害线粒体,这表现在线粒体碎片化和功能障碍上。此外,氨基酸、核苷酸、含硫化合物、甘油脂和甘油磷脂代谢的破坏与基因途径的证据碎片非常吻合。我们的研究结果表明,尽管可能存在特定于生物体的反应,但无论物种和物理化学因素如何,都可能存在潜在的保守事件。这些结果为开发跨物种的 AgNPs 不良结局途径和 AgNPs 的监管毒性提供了有价值的见解。

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