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Müller 胶质细胞及其衍生物在视网膜再生治疗中的应用前景。

Prospects for the application of Müller glia and their derivatives in retinal regenerative therapies.

机构信息

NIHR Biomedical Research Centre at Moorfields Eye Hospital and UCL Institute of Ophthalmology, London, UK.

NIHR Biomedical Research Centre at Moorfields Eye Hospital and UCL Institute of Ophthalmology, London, UK.

出版信息

Prog Retin Eye Res. 2021 Nov;85:100970. doi: 10.1016/j.preteyeres.2021.100970. Epub 2021 Apr 28.

Abstract

Neural cell death is the main feature of all retinal degenerative disorders that lead to blindness. Despite therapeutic advances, progression of retinal disease cannot always be prevented, and once neuronal cell damage occurs, visual loss cannot be reversed. Recent research in the stem cell field, and the identification of Müller glia with stem cell characteristics in the human eye, have provided hope for the use of these cells in retinal therapies to restore vision. Müller glial cells, which are the major structural cells of the retina, play a very important role in retinal homeostasis during health and disease. They are responsible for the spontaneous retinal regeneration observed in zebrafish and lower vertebrates during early postnatal life, and despite the presence of Müller glia with stem cell characteristics in the adult mammalian retina, there is no evidence that they promote regeneration in humans. Like many other stem cells and neurons derived from pluripotent stem cells, Müller glia with stem cell potential do not differentiate into retinal neurons or integrate into the retina when transplanted into the vitreous of experimental animals with retinal degeneration. However, despite their lack of integration, grafted Müller glia have been shown to induce partial restoration of visual function in spontaneous or induced experimental models of photoreceptor or retinal ganglion cell damage. This improvement in visual function observed after Müller cell transplantation has been ascribed to the release of neuroprotective factors that promote the repair and survival of damaged neurons. Due to the development and availability of pluripotent stem cell lines for therapeutic uses, derivation of Müller cells from retinal organoids formed by iPSC and ESC has provided more realistic prospects for the application of these cells to retinal therapies. Several opportunities for research in the regenerative field have also been unlocked in recent years due to a better understanding of the genomic and proteomic profiles of the developing and regenerating retina in zebrafish, providing the basis for further studies of the human retina. In addition, the increased interest on the nature and function of cellular organelle release and the characterization of molecular components of exosomes released by Müller glia, may help us to design new approaches that could be applied to the development of more effective treatments for retinal degenerative diseases.

摘要

神经细胞死亡是导致失明的所有视网膜退行性疾病的主要特征。尽管治疗方法有所进步,但仍无法阻止视网膜疾病的进展,一旦神经元细胞受损,视力丧失就无法逆转。干细胞领域的最新研究以及在人眼中发现具有干细胞特征的 Müller 胶质细胞,为利用这些细胞进行视网膜治疗以恢复视力带来了希望。Müller 胶质细胞是视网膜的主要结构细胞,在健康和疾病状态下的视网膜稳态中起着非常重要的作用。它们负责在斑马鱼和较低等脊椎动物的早期产后生活中观察到的自发性视网膜再生,尽管成年哺乳动物视网膜中存在具有干细胞特征的 Müller 胶质细胞,但没有证据表明它们在人类中促进再生。与许多其他干细胞和源自多能干细胞的神经元一样,具有干细胞潜能的 Müller 胶质细胞在移植到具有视网膜变性的实验动物的玻璃体中时不会分化为视网膜神经元或整合到视网膜中。然而,尽管它们没有整合,移植的 Müller 胶质细胞已被证明可以在自发或诱导的光感受器或视网膜神经节细胞损伤的实验模型中引起部分视觉功能的恢复。在 Müller 细胞移植后观察到的这种视觉功能的改善归因于释放神经营养因子,促进受损神经元的修复和存活。由于为治疗用途开发和提供了多能干细胞系,因此从由 iPSC 和 ESC 形成的视网膜类器官中衍生出 Müller 细胞为这些细胞在视网膜治疗中的应用提供了更现实的前景。由于对斑马鱼发育中和再生中的视网膜的基因组和蛋白质组谱有了更好的了解,近年来再生领域的几项研究机会也被解锁,为进一步研究人类视网膜提供了基础。此外,对细胞细胞器释放的性质和功能的兴趣增加,以及对 Müller 胶质细胞释放的外泌体的分子成分的特征描述,可能有助于我们设计新的方法,这些方法可应用于开发更有效的治疗视网膜退行性疾病的方法。

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