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Retinal Ganglion Cell Replacement: Current Status and Challenges Ahead

机译:视网膜神经节细胞更换:现状和面临的挑战

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The neurons of the retina can be affected by a wide variety of inherited or environmental degenerations that can lead to vision loss and even blindness. Retinal ganglion cell (RGC) degeneration is the hallmark of glaucoma and other optic neuropathies that affect millions of people worldwide. Numerous strategies are being trialed to replace lost neurons in different degeneration models, and in recent years, stem cell technologies have opened promising avenues to obtain donor cells for retinal repair. Stem cell-based transplantation has been most frequently used for the replacement of rod photoreceptors, but the same tools could potentially be used for other retinal cell types, including RGCs. However, RGCs are not abundant in stem cell-derived cultures, and in contrast to the short-distance wiring of photoreceptors, RGC axons take a long and intricate journey to connect with numerous brain nuclei. Hence, a number of challenges still remain, such as the ability to scale up the production of RGCs and a reliable and functional integration into the adult diseased retina upon transplantation. In this review, we discuss the recent advancements in the development of replacement therapies for RGC degenerations and the challenges that we need to overcome before these technologies can be applied to the clinic. Developmental Dynamics 248:118-128, 2019. (c) 2018 Wiley Periodicals, Inc.
机译:视网膜的神经元可以受到各种各样的遗传或环境退化的影响,这可能导致视力丧失甚至失明。视网膜神经节细胞(RGC)变性是青光眼和其他光学神经病的标志,这些视神经病在全球范围内影响数百万人。在不同退化模型中试验许多策略以取代失去的神经元,近年来,干细胞技术已经开启了有希望的途径,以获得助剂细胞进行视网膜修复。基于干细胞的移植最常用于更换杆光感受器,但是相同的工具可能用于其他视网膜细胞类型,包括RGC。然而,RGCS在干细胞衍生的培养物中并不丰富,与光感受器的短距离布线相比,RGC轴突采用了长期且复杂的脑核来连接。因此,仍然存在许多挑战,例如在移植过程中扩大RGC的生产以及对成人患病视网膜的可靠和功能整合的能力。在这篇综述中,我们讨论了最近为RGC退化的替代疗法的发展以及我们在这些技术应用于诊所之前需要克服的挑战。发展动力学248:2019年(c)2018年Wiley期刊,Inc。

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