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Erythropoietin: New Directions for the Nervous System

机译:促红细胞生成素:神经系统的新方向

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New treatment strategies with erythropoietin (EPO) offer exciting opportunities to prevent the onset and progression of neurodegenerative disorders that currently lack effective therapy and can progress to devastating disability in patients. EPO and its receptor are present in multiple systems of the body and can impact disease progression in the nervous, vascular, and immune systems that ultimately affect disorders such as Alzheimer’s disease, Parkinson’s disease, retinal injury, stroke, and demyelinating disease. EPO relies upon wingless signaling with Wnt1 and an intimate relationship with the pathways of phosphoinositide 3-kinase (PI 3-K), protein kinase B (Akt), and mammalian target of rapamycin (mTOR). Modulation of these pathways by EPO can govern the apoptotic cascade to control β-catenin, glycogen synthase kinase-3β, mitochondrial permeability, cytochrome c release, and caspase activation. Yet, EPO and each of these downstream pathways require precise biological modulation to avert complications associated with the vascular system, tumorigenesis, and progression of nervous system disorders. Further understanding of the intimate and complex relationship of EPO and the signaling pathways of Wnt, PI 3-K, Akt, and mTOR are critical for the effective clinical translation of these cell pathways into robust treatments for neurodegenerative disorders.
机译:促红细胞生成素(EPO)的新治疗策略为预防神经退行性疾病的发作和发展提供了令人兴奋的机会,这些疾病目前缺乏有效的治疗方法,并可能导致严重的残疾。 EPO及其受体存在于人体的多个系统中,可影响神经,血管和免疫系统的疾病进展,最终影响诸如阿尔茨海默氏病,帕金森氏病,视网膜损伤,中风和脱髓鞘疾病等疾病。 EPO依赖于Wnt1的无翅信号传导,并且与磷酸肌醇3-激酶(PI 3-K),蛋白激酶B(Akt)和哺乳动物雷帕霉素靶标(mTOR)的通路密切相关。 EPO对这些途径的调节可控制细胞凋亡级联反应,以控制β-catenin,糖原合酶激酶3β,线粒体通透性,细胞色素c释放和caspase活化。然而,EPO和这些下游途径中的每一个都需要精确的生物学调节,以避免与血管系统,肿瘤发生和神经系统疾病的进展相关的并发症。进一步了解EPO与Wnt,PI 3-K,Akt和mTOR信号通路的密切和复杂关系,对于将这些细胞通路有效地临床转化为神经退行性疾病的有效治疗至关重要。

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