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有毒金属和多氯联苯混合物对甲状腺和男性生殖毒性的影响:计算毒理学基因数据挖掘。

Involvement of toxic metals and PCBs mixture in the thyroid and male reproductive toxicity: In silico toxicogenomic data mining.

机构信息

Department of Toxicology "Akademik Danilo Soldatović", University of Belgrade - Faculty of Pharmacy, Belgrade, Serbia.

Department of Toxicology "Akademik Danilo Soldatović", University of Belgrade - Faculty of Pharmacy, Belgrade, Serbia.

出版信息

Environ Res. 2023 Dec 1;238(Pt 2):117274. doi: 10.1016/j.envres.2023.117274. Epub 2023 Oct 4.

Abstract

Toxicological research is mostly limited to considering the effects of a single substance, even though the real exposure of people is reflected in their daily exposure to many different chemical substances in low-doses. This in silico toxicogenomic study aims to provide evidence for the selected environmental (organo)metals (lead, cadmium, methyl mercury) + polychlorinated biphenyls mixture involvement in the possible alteration of thyroid, and male reproductive system function, and furthermore to predict the possible toxic mechanisms of the environmental cocktail. The Comparative Toxicogenomic Database, GeneMANIA online software, and ToppGene Suite portal were used as the main tools for toxicogenomic data mining and gene ontology analysis. The results show that 35 annotated common genes between selected chemicals and endocrine system diseases can interact on the co-expression level. Our study highlighted the disruption of the cytokines, the cell's response to oxidative stress, and the influence of the transcription factors as the potential core of toxicological mechanisms of the discussed mixture's effects. The connected toxicological effects of the tested mixture were abnormal sperm cells, a disrupted level of testosterone, and thyroid hormones. The core mechanisms of these effects were inflammation, oxidative stress, disruption of androgen receptor signaling, and the alteration of the FOXO3-Keap-1/NRF2-HMOX1-NQO1 pathway signaling most likely controlled by the co-expression of overlapped genes among used chemicals. This in silico research can be used as a potential core for the determination of biomarkers that can be monitored in future further in vitro and in vivo experiments.

摘要

毒理学研究大多局限于考虑单一物质的影响,尽管人们的实际暴露反映在他们日常接触的许多不同化学物质的低剂量中。本研究旨在为选定的环境(有机)金属(铅、镉、甲基汞)+多氯联苯混合物参与甲状腺和男性生殖系统功能的可能改变提供证据,并进一步预测环境混合物的可能毒性机制。使用比较毒理基因组数据库、GeneMANIA 在线软件和 ToppGene Suite 门户作为毒理基因组数据挖掘和基因本体分析的主要工具。结果表明,35 个注释的常见基因可以在所选化学物质和内分泌系统疾病之间进行共表达水平的相互作用。我们的研究强调了细胞因子、细胞对氧化应激的反应以及转录因子的影响作为所讨论混合物作用的毒性机制的潜在核心。测试混合物的连接毒性作用是异常精子、睾丸激素水平破坏和甲状腺激素破坏。这些影响的核心机制是炎症、氧化应激、雄激素受体信号的破坏以及 FOXO3-Keap-1/NRF2-HMOX1-NQO1 途径信号的改变,这些很可能由所用化学物质之间重叠基因的共表达控制。这项计算机研究可以用作确定生物标志物的潜在核心,这些生物标志物可以在未来的进一步体外和体内实验中进行监测。

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