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In vitro evaluation of structural analogs of diallyl sulfide as novel CYP2E1 inhibitors for their protective effect against xenobiotic-induced toxicity and HIV replication

机译:作为新的CYP2E1抑制剂的二烯丙基硫醚结构类似物的体外评价对异种生物诱导的毒性和HIV复制的保护作用

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摘要

Diallyl sulfide (DAS) has been shown to prevent xenobiotic (e.g. ethanol, acetaminophen) induced toxicity and disease (e.g. HIV-1) pathogenesis. DAS imparts its beneficial effect by inhibiting CYP2E1-mediated metabolism of xenobiotics, especially at high concentration. However, DAS also causes toxicity at relatively high dosages and with long exposure times. Therefore, the goal of the current study was to investigate the structural analogs of DAS for their improved toxicity profiles and their effectiveness in reducing xenobiotic-induced toxicity and HIV-1 replication. Previously, we identified commercially available analogs that possessed CYP2E1 inhibitory capacity greater than or equal to that of DAS. In this study, we evaluated the toxicity and efficacy of these analogs using hepatocytes, monocytes, and astrocytes where CYP2E1 plays an important role in xenobiotic-mediated toxicity. Our results showed that thiophene, allyl methyl sulfide, diallyl ether, and 2-prop-2-enoxyacetamide are significantly less cytotoxic than DAS in these cells. Moreover, these analogs reduced ethanol- and acetaminophen-induced toxicity in hepatocytes and HIV-1 replication in monocytes more effectively than DAS. Overall, our findings are significant in terms of using these DAS analogs as a tool in vitro and in vivo, especially to examine chronic xenobiotic-induced toxicity and disease pathogenesis that occurs through the CYP2E1 pathway.
机译:二烯丙基硫化物(DAS)已显示可预防异种生物(例如乙醇,对乙酰氨基酚)诱导的毒性和疾病(例如HIV-1)的发病机理。 DAS通过抑制CYP2E1介导的异源生物代谢,特别是在高浓度时,发挥其有益的作用。但是,DAS在较高剂量和长时间暴露下也会引起毒性。因此,本研究的目的是研究DAS的结构类似物,以改善其毒性概况及其在减少异源生物诱导的毒性和HIV-1复制中的有效性。以前,我们确定了具有CYP2E1抑制能力大于或等于DAS的CYP2E1抑制作用的市售类似物。在这项研究中,我们使用肝细胞,单核细胞和星形胶质细胞(其中CYP2E1在异源生物介导的毒性中起重要作用)评估了这些类似物的毒性和功效。我们的结果表明,在这些细胞中,噻吩,烯丙基甲基硫醚,二烯丙基醚和2-prop-2-enoxyacetamide的细胞毒性明显低于DAS。此外,这些类似物比DAS更有效地降低了乙醇和对乙酰氨基酚诱导的肝细胞毒性以及单核细胞中的HIV-1复制。总体而言,我们的发现对于在体外和体内使用这些DAS类似物作为工具具有重要意义,尤其是检查通过CYP2E1途径发生的慢性异源生物诱导的毒性和疾病发病机理。

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