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Oxidative stress-induced overexpression of miR-25: the mechanism underlying the degeneration of melanocytes in vitiligo

机译:氧化应激诱导的miR-25过表达:白癜风中黑素细胞变性的潜在机制

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Oxidative stress has a critical role in the pathogenesis of vitiligo. However, the specific molecular mechanism involved in oxidative stress-induced melanocyte death is not well characterized. Given the powerful role of microRNAs (miRNAs) in the regulation of cell survival as well as the fact that the generation of miRNAs can be affected by oxidative stress, we hypothesized that miRNAs may participate in vitiligo pathogenesis by modulating the expression of vital genes in melanocytes. In the present study, we initially found that miR-25 was increased in both serum and lesion samples from vitiligo patients, and its serum level was correlated with the activity of vitiligo. Moreover, restoration of miR-25 promoted the H2O2-induced melanocyte destruction and led to the dysfunction of melanocytes. Further experiments proved that MITF, a master regulator in melanocyte survival and function, accounted for the miR-25-caused damaging impact on melanocytes. Notably, other than the direct role on melanocytes, we observed that miR-25 inhibited the production and secretion of SCF and bFGF from keratinocytes, thus impairing their paracrine protective effect on the survival of melanocytes under oxidative stress. At last, we verified that oxidative stress could induce the overexpression of miR-25 in both melanocytes and keratinocytes possibly by demethylating the promoter region of miR-25. Taken together, our study demonstrates that oxidative stress-induced overexpression of miR-25 in vitiligo has a crucial role in promoting the degeneration of melanocytes by not only suppressing MITF in melanocytes but also impairing the paracrine protective effect of keratinocytes. Therefore, it is worthy to investigate the possibility of miR-25 as a potential drug target for anti-oxidative therapy in vitiligo.
机译:氧化应激在白癜风的发病机理中具有关键作用。但是,涉及氧化应激诱导的黑素细胞死亡的具体分子机制尚不十分清楚。鉴于microRNA(miRNA)在调节细胞存活中的强大作用以及miRNA的生成会受到氧化应激影响的事实,我们假设miRNA可能通过调节黑素细胞中重要基因的表达参与白癜风发病。 。在本研究中,我们最初发现白癜风患者的血清和病变样品中的miR-25均升高,并且其血清水平与白癜风的活性相关。此外,恢复miR-25促进了H2O2诱导的黑素细胞破坏,并导致黑素细胞功能障碍。进一步的实验证明,MITF是黑色素细胞存活和功能的主要调节剂,是miR-25对黑色素细胞造成破坏性影响的原因。值得注意的是,除了直接作用于黑素细胞外,我们还观察到miR-25抑制了角质形成细胞SCF和bFGF的产生和分泌,从而削弱了它们对氧化应激下黑素细胞存活的旁分泌保护作用。最后,我们证实了氧化应激可能通过使miR-25的启动子区域脱甲基化而诱导黑素细胞和角质形成细胞中miR-25的过表达。两者合计,我们的研究表明,氧化应激诱导的白癜风中miR-25的过度表达不仅通过抑制黑素细胞中的MITF,而且还削弱了角质形成细胞的旁分泌保护作用,从而在促进黑素细胞变性中起关键作用。因此,有必要研究miR-25作为白癜风抗氧化治疗的潜在药物靶标的可能性。

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