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Hepatic and Nephric NRF2 Pathway Up-Regulation an Early Antioxidant Response in Acute Arsenic-Exposed Mice

机译:急性砷暴露小鼠的肝和肾NRF2通路上调早期抗氧化反应。

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摘要

Inorganic arsenic (iAs), a proven human carcinogen, damages biological systems through multiple mechanisms, one of them being reactive oxygen species (ROS) production. NRF2 is a redox-sensitive transcription factor that positively regulates the genes of encoding antioxidant and detoxification enzymes to neutralize ROS. Although NRF2 pathway activation by iAs has been reported in various cell types, however, the experimental data in vivo are very limited and not fully elucidated in humans. The present investigation aimed to explore the hepatic and nephric NRF2 pathway upregulation in acute arsenic-exposed mice in vivo. Our results showed 10 mg/kg NaAsO2 elevated the NRF2 protein and increased the transcription of Nrf2 mRNA, as well as up-regulated NRF2 downstream targets HO-1, GST and GCLC time- and dose-dependently both in the liver and kidney. Acute NaAsO2 exposure also resulted in obvious imbalance of oxidative redox status represented by the increase of GSH and MDA, and the decrease of T-AOC. The present investigation reveals that hepatic and nephric NRF2 pathway expression is an early antioxidant defensive response upon iAs exposure. A better knowledge about the NRF2 pathway involvment in the cellular response against arsenic could help improve the strategies for reducing the cellular toxicity related to this metalloid.
机译:无机砷(iAs)是一种经过验证的人类致癌物,它通过多种机制破坏生物系统,其中一种是产生活性氧(ROS)。 NRF2是氧化还原敏感的转录因子,可正向调节编码抗氧化剂和解毒酶的基因以中和ROS。尽管已经在各种细胞类型中报道了通过iAs激活NRF2途径,但是,体内的实验数据非常有限,还没有在人体中得到充分阐明。本研究旨在探讨急性砷暴露小鼠体内肝脏和肾脏NRF2途径的上调。我们的结果表明,在肝脏和肾脏中,10 mg / kg NaAsO2升高NRF2蛋白并增加Nrf2 mRNA的转录,以及NRF2下游靶点HO-1,GST和GCLC的时间和剂量依赖性上调。急性NaAsO2暴露还导致氧化还原状态的明显失衡,其表现为GSH和MDA的增加以及T-AOC的减少。本研究表明,肝和肾NRF2途径的表达是iAs暴露后的早期抗氧化剂防御反应。有关NRF2途径参与砷抗性细胞应答的更好的知识可能有助于改善降低与该准金属有关的细胞毒性的策略。

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