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The peripheral eye: A neurogenic area with potential to treat retinal pathologies?

机译:外周眼:神经源性区域,具有治疗视网膜病理的潜力吗?

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Numerous degenerative diseases affecting visual function, including glaucoma and retinitis pigmentosa, are produced by the loss of different types of retinal cells. Cell replacement therapy has emerged as a promising strategy for treating these and other retinal diseases. The retinal margin or ciliary body (CB) of mammals has been proposed as a potential source of cells to be used in degenerative conditions affecting the retina because it has been reported it might hold neurogenic potential beyond embryonic development. However, many aspects of the origin and biology of the CB are unknown and more recent experiments have challenged the capacity of CB cells to generate different types of retinal neurons. Here we review the most recent findings about the development of the marginal zone of the retina in different vertebrates and some of the mechanisms underlying the proliferative and neurogenic capacity of this fascinating region of the vertebrates eye. In addition, we performed experiments to isolate CB cells from the mouse retina, generated neurospheres and observed that they can be expanded with a proliferative ratio similar to neural stem cells. When induced to differentiate, cells derived from the CB neurospheres start to express early neural markers but, unlike embryonic stem cells, they are not able to fully differentiate in vitro or generate retinal organoids. Together with previous reports on the neurogenic capacity of CB cells, also reviewed here, our results contribute to the current knowledge about the potentiality of this peripheral region of the eye as a therapeutic source of functional retinal neurons in degenerative diseases.
机译:影响视觉功能的许多退行性疾病,包括青光眼和视网膜色素炎,由不同类型的视网膜细胞丧失产生。细胞替代疗法已成为治疗这些和其他视网膜疾病的有希望的策略。已经提出了哺乳动物的视网膜边缘或睫状体(CB)作为用于影响视网膜的退行性条件的潜在细胞来源,因为据报道它可能会占胚胎发育的神经源性潜力。然而,CB的起源和生物学的许多方面是未知的,更新的实验挑战CB细胞产生不同类型视网膜神经元的能力。在这里,我们审查了关于不同脊椎动物中视网膜边缘区的最新结果,以及脊椎动物眼睛的这种迷人区域的增殖和神经源性能力的一些机制。此外,我们进行实验以将Cb细胞与小鼠视网膜,产生的神经球分离,并观察到它们可以以类似于神经干细胞的增殖比率扩展。当诱导分化时,衍生自CB神经球的细胞开始表达早期神经标记物,而是与胚胎干细胞不同,它们不能在体外完全分化或产生视网膜器材。与之前的报告有关CB细胞的神经源性能力,我们在此审查,我们的结果有助于目前关于眼外部区域的潜在知识作为退行性疾病中功能视网膜神经元的治疗来源。

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