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Dual Switch Mechanism of Erythropoietin as an Antiapoptotic and Pro-Angiogenic Determinant in the Retina

机译:促红细胞生成素作为视网膜抗透露性和血管生成法决定蛋白的双切换机制

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Constant or intense light degenerates the retina and retinal pigment epithelial cells. Light generates reactive oxygen species and nitric oxide leading to initial reactions of retinal degeneration. Apoptosis is the primary mechanism of abnormal death of photoreceptors, retinal ganglion cells, or retinal pigment epithelium (RPE) in degenerative retinal diseases, including diabetic retinopathy and age-related macular degeneration. The current study evaluated the function of erythropoietin (EPO) on angiogenesis and apoptosis in the retina and RPE under oxidative stress. We determined the pro-angiogenic and antiapoptotic mechanism of EPO under stress conditions using a conditional EPO knockdown model using siRNA, EPO addition, proteomics, immunocytochemistry, and bioinformatic analysis. Our studies verified that EPO protected retinal cells from light-, hypoxia-, hyperoxia-, and hydrogen peroxide-induced apoptosis through caspase inhibition, whereas up-regulated angiogenic reactions through vascular endothelial growth factor (VEGF) and angiotensin pathway. We demonstrated that the EPO expression in the retina and subsequent serine/threonine/tyrosine kinase phosphorylations might be linked to oxidative stress response tightly to determining angiogenesis and apoptosis. Neuroprotective roles of EPO may involve the balance between antiapoptotic and pro-angiogenic signaling molecules, including BCL-xL, c-FOS, caspase-3, nitric oxide, angiotensin, and VEGF receptor. Our data indicate a new therapeutic application of EPO toward retinal degeneration based on the dual roles in apoptosis and angiogenesis at the molecular level under oxidative stress.
机译:恒定或强烈的光退化视网膜和视网膜色素上皮细胞。光产生反应性氧物种和一氧化氮,导致视网膜变性的初始反应。细胞凋亡是令人退行性视网膜疾病中感受体,视网膜神经节细胞或视网膜色素上皮(RPE)异常死亡的主要机制,包括糖尿病视网膜病变和年龄相关的黄斑变性。目前的研究评估了促红细胞生成素(EPO)对氧化胁迫下视网膜和RPE中血管生成和凋亡的功能。使用SiRNA,EPO加法,蛋白质组学,免疫细胞化学和生物信息分析,确定使用条件EPO敲低模型在应力条件下进行血管生成和抗曝光机制。我们的研究证实,通过胱天蛋白酶抑制,从光,缺氧,高氧 - 和过氧化氢诱导的细胞凋亡中受到保护的视网膜细胞,而通过血管内皮生长因子(VEGF)和血管紧张素途径上调血管生成反应。我们证明了视网膜和随后的丝氨酸/苏氨酸/酪氨酸激酶磷酸化的EPO表达可以与氧化应激反应紧密地连接到确定血管生成和凋亡。 EPO的神经保护作用可能涉及抗曝气和促血管生成信号传导分子之间的平衡,包括BCL-XL,C-FOS,Caspase-3,一氧化氮,血管紧张素和VEGF受体。我们的数据表明EPO对视网膜变性的新治疗应用,基于氧化应激在分子水平的细胞凋亡和血管生成中的双重作用。

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