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首页> 外文期刊>Scientific reports. >Toxic metabolites, MAPK and Nrf2/Keap1 signaling pathways involved in oxidative toxicity in mice liver after chronic exposure to Mequindox
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Toxic metabolites, MAPK and Nrf2/Keap1 signaling pathways involved in oxidative toxicity in mice liver after chronic exposure to Mequindox

机译:在慢性暴露于Mequindox后,在小鼠肝脏中氧化毒性涉及氧化毒性的毒性代谢物,MAPK和NRF2 / Keap1信号通路

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Mequindox (MEQ) is a synthetic antimicrobial agent of quinoxaline-1,4-dioxide group (QdNOs). The liver is regarded as the toxicity target of QdNOs, and the role of N?→?O group-associated various toxicities mediated by QdNOs is well recognized. However, the mechanism underlying the in vivo effects of MEQ on the liver, and whether the metabolic pathway of MEQ is altered in response to the pathophysiological conditions still remain unclear. We now provide evidence that MEQ triggers oxidative damage in the liver. Moreover, using LC/MS-ITTOF analysis, two metabolites of MEQ were detected in the liver, which directly confirms the potential connection between N?→?O group reduction metabolism of MEQ and liver toxicity. The gender difference in MEQ-induced oxidative stress might be due to adrenal toxicity and the generation of M4 (2-isoethanol 1-desoxymequindox). Furthermore, up-regulation of the MAPK and Nrf2-Keap1 family and phase II detoxifying enzymes (HO-1, GCLC and NQO1) were also observed. The present study demonstrated for the first time the protein peroxidation and a proposal metabolic pathway after chronic exposure of MEQ, and illustrated that the MAPK, Nrf2-Keap1 and NF-кB signaling pathways, as well as the altered metabolism of MEQ, were involved in oxidative toxicity mediated by MEQ in vivo.
机译:MEQUINDOX(MEQ)是喹喔啉-1,4-二氧化族基团(QDNOS)的合成抗微生物剂。肝脏被视为QDNO的毒性靶标,QDNOS介导的N→o族相关的各种毒性的作用得到了很好的认可。然而,在肝脏上的MEQ体内效应的机制,以及MEQ的代谢途径是否响应于病理生理病症仍然不清楚。我们现在提供了MEQ触发肝脏氧化损伤的证据。此外,使用LC / MS-ITTOF分析,在肝脏中检测到MEQ的两种代谢物,直接确认N?→o群群之间的潜在连接,梅克和肝脏毒性。 MEQ诱导的氧化胁迫的性别差异可能是由于肾上腺毒性和M4(2-异乙醇1-脱氧氧基吲哚)的产生导致的。此外,还观察到MAPK和NRF2-Keap1的上调和NRF2-Keap1系列和II期解毒酶(HO-1,GCLC和NQO1)。本研究首次证明了MEQ慢性暴露后的蛋白质过氧化和提案代谢途径,并说明了MAPK,NRF2-KEAP1和NF-кB信号传导途径以及MEQ的改变的MEQ代谢。 MEQ体内介导的氧化毒性。

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