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MicroRNAs take part in pathophysiology and pathogenesis of Male Pattern Baldness

机译:MicroRNA参与男性型秃发的病理生理和发病机理

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Male Pattern Baldness (MPB) or androgenetic alopecia is a common form of hair loss with androgens and genetics having etiological significance. Androgens are thought to pathophysiologically power on cascades of chronically dramatic alterations in genetically susceptible scalp dermal papillas, specialized cells in hair follicles in which androgens react, and finally resulting in a patterned alopecia. However, the exact mechanisms through which androgens, positive regulators of growth and anabolism in most body sites, paradoxically exert their effects on balding hair follicles, are not yet known. The role of microRNAs, a recently discovered class of non-coding RNAs, with a wide range of regulatory functions, has been documented in hair follicle formation and their deregulation in cancer of prostate, a target organ of androgens has also been delineated. Yet, there is a lack of knowledge in agreement with microRNAs’ contribution in pathophysiology of MPB. To investigate the role of microRNAs in pathogenesis of MPB, we selected seven microRNAs, predicted bioinformatically on a reverse engineering basis, from previously published microarray gene expression data and analyzed their expression in balding relative to non-balding dermal papillas. We found for the first time upregulation of four microRNAs (miR-221, miR-125b, miR-106b and miR-410) that could participate in pathogenesis of MPB. Regarding microRNAs’ therapeutic potential and accessibility of hair follicles for gene therapy, these microRNAs can be considered as good candidates for a new revolutionized generation of treatments.
机译:男性型秃发(MPB)或雄激素性脱发是脱发的常见形式,雄激素和遗传学具有病因学意义。人们认为,雄激素在遗传易感性头皮真皮乳头,毛囊中的特殊细胞(其中雄激素会在其中发生反应)的一系列慢性剧烈变化的病理生理作用上起作用,并最终导致图案性脱发。但是,尚不知道雄激素(大多数身体部位的生长和合成代谢的正向调节剂)对秃顶的毛囊产生反常作用的确切机制。 microRNA的作用,最近发现的一类非编码RNA,具有广泛的调节功能,已在毛囊形成及其在前列腺癌(雄激素的靶器官)中的失调中被证明。然而,缺乏与microRNA在MPB病理生理中的贡献相一致的知识。为了研究microRNA在MPB发病机理中的作用,我们从先前发表的微阵列基因表达数据中选择了七个microRNA,在逆向工程的基础上进行了生物信息学预测,并分析了它们在秃顶相对于非秃顶真皮乳头的表达。我们首次发现可能参与MPB发病机制的四种microRNA(miR-221,miR-125b,miR-106b和miR-410)上调。关于microRNA的治疗潜力和毛囊可用于基因治疗的可能性,这些microRNA可以被视为新一代革命性治疗方法的良好候选者。

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