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Integrative toxicogenomic analysis for elucidating molecular interference on DNA integrity and repair system with underlying signaling networks in response to low-level lead acetate in rat liver model

机译:整合毒理基因组分析,阐明对大鼠肝脏模型中低水平乙酸铅的反应对DNA完整性和具有潜在信号网络的修复系统的分子干扰

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Lead (Pb) is widely used in consumer products as an alloy and pigment despite its well-known serious toxic effects. Pb absorbed through the gastrointestinal and respiratory system flows through the bloodstream and accumulates in the brain, bone and liver. Especially, the liver is well known as an important organ for detoxification, and a number of prior studies have confirmed the alteration of diverse biological mechanisms caused by long-term Pb exposure in the liver. In this study, we investigated the genotoxic potential of Pb on nuclear DNA and repair capacity using comet and AP endonuclease activity assay, respectively in rat liver tissue at long-term and low-level exposure. Significant extent of DNA break damages and the impairment of enzymatic repair activities were observed in the Pb exposed group, in comparison to the control group. In addition, using integrative toxicogenomic approach we comprehensively analyzed the Pb-induced gene alteration in genome-wide scale and DNA excision repair-focused biological networks using microarray and pathway analysis, respectively. Based on integrative approach, we suggest that genotoxic effects of low-level Pb exposure are, in part, involved in the enhancement of DNA strand break and impairment of repair activity, with complex molecular signaling pathways. Our study provides perspective on novel biomarker responsible for Pb-induced hepatotoxicity at long-term and low-dose exposure, which would be useful for further development of gene-targeted therapeutic strategies and/or natural chemo-preventive agents for effective reduction of the Pb toxicity in both occupational and environmental perspectives. The exact mechanism of genotoxicity in liver exposed to low-level Pb will be further warranted.
机译:尽管众所周知,铅(Pb)具有严重的毒性作用,但仍被广泛用作消费品中的合金和颜料。通过胃肠道和呼吸系统吸收的铅流经血液,并积聚在脑,骨骼和肝脏中。特别是,肝脏是排毒的重要器官,众所周知,许多先前的研究已经证实,肝脏长期暴露于铅会引起多种生物学机制的改变。在这项研究中,我们分别使用彗星和AP核酸内切酶活性测定法研究了长期和低水平暴露下大鼠肝脏组织中铅对核DNA的遗传毒性潜力和修复能力。与对照组相比,在铅暴露组中观察到了DNA断裂破坏的严重程度和酶修复活性的损害。此外,我们使用综合毒理基因组学方法,分别使用微阵列和通路分析,全面分析了铅诱导的基因组范围内基因改变和以DNA切除修复为重点的生物网络。基于综合方法,我们建议低水平Pb暴露的遗传毒性效应部分涉及通过复杂的分子信号传导途径增强DNA链断裂和修复活性的损害。我们的研究为长期和低剂量暴露引起铅引起的肝毒性的新型生物标志物提供了视角,这将有助于进一步开发针对基因的治疗策略和/或天然化学预防剂以有效降低铅在职业和环境方面均具有毒性。暴露于低水平Pb的肝脏中遗传毒性的确切机制将进一步得到保证。

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