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Neuroglobin Is an Endogenous Neuroprotectant for Retinal Ganglion Cells against Glaucomatous Damage

机译:神经珠蛋白是视网膜神经节细胞抗青光眼损伤的内源性神经保护剂。

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摘要

Neuroglobin (NGB), a newly discovered member of the globin superfamily, may regulate neuronal survival under hypoxia or oxidative stress. Although NGB is greatly expressed in retinal neurons, the biological functions of NGB in retinal diseases remain largely unknown. We investigated the role of NGB in an experimental model of glaucoma, a neurodegenerative disorder that usually involves elevation of intraocular pressure (IOP). Elevated IOP is thought to induce oxidative stress in retinal ganglion cells (RGCs), thereby causing RGC death and, eventually, blindness. We found that NGB plays a critical role in increasing RGC resistance to ocular hypertension and glaucomatous damage. Elevation of IOP stimulated a transient up-regulation of endogenous NGB in RGCs. Constitutive overexpression of NGB in transgenic mice prevented RGC damage induced by glutamate cytotoxicity in vitro and/or by chronic IOP elevation in vivo. Moreover, overexpression of NGB attenuated ocular hypertension-induced superoxide production and the associated decrease in ATP levels in mice, suggesting that NGB acts as an endogenous neuroprotectant to reduce oxidative stress and improve mitochondrial function, thereby promoting RGC survival. Thus, NGB may modulate RGC susceptibility to glaucomatous neural damage. Manipulating the expression and bioactivity of NGB may represent a novel therapeutic strategy for glaucoma.
机译:神经球蛋白(NGB)是球蛋白超家族的新成员,可能在缺氧或氧化应激下调节神经元的存活。尽管NGB在视网膜神经元中大量表达,但是NGB在视网膜疾病中的生物学功能仍然未知。我们调查了NGB在青光眼实验模型中的作用,青光眼是一种神经退行性疾病,通常涉及眼内压(IOP)升高。眼压升高被认为会诱导视网膜神经节细胞(RGC)氧化应激,从而导致RGC死亡并最终导致失明。我们发现NGB在增加RGC对高眼压和青光眼损害的抵抗力中起关键作用。 IOP的升高刺激了RGCs中内源性NGB的瞬时上调。在转基因小鼠中NGB的组成型过表达防止了体外谷氨酸细胞毒性和/或体内慢性IOP升高引起的RGC损伤。此外,NGB的过表达减弱了高眼压诱发的超氧化物生成以及小鼠中ATP含量的降低,这表明NGB可以作为内源性神经保护剂来减少氧化应激并改善线粒体功能,从而促进RGC的存活。因此,NGB可能调节RGC对青光眼神经损伤的敏感性。操纵NGB的表达和生物活性可能代表青光眼的一种新型治疗策略。

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