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移植的多能干细胞源性光感受器前体细胞在晚期视网膜变性的小鼠中引发传统和非传统的光反应。

Transplanted pluripotent stem cell-derived photoreceptor precursors elicit conventional and unusual light responses in mice with advanced retinal degeneration.

机构信息

Biosciences Institute, Faculty of Medical Sciences, Newcastle University, Newcastle upon Tyne, UK.

Microscopy Centre and Department of Applied Clinical Sciences and Biotechnology, University of L'Aquila, L'Aquila, Italy.

出版信息

Stem Cells. 2021 Jul;39(7):882-896. doi: 10.1002/stem.3365. Epub 2021 Mar 6.

Abstract

Retinal dystrophies often lead to blindness. Developing therapeutic interventions to restore vision is therefore of paramount importance. Here we demonstrate the ability of pluripotent stem cell-derived cone precursors to engraft and restore light responses in the Pde6brd1 mouse, an end-stage photoreceptor degeneration model. Our data show that up to 1.5% of precursors integrate into the host retina, differentiate into cones, and engraft in close apposition to the host bipolar cells. Half of the transplanted mice exhibited visual behavior and of these 33% showed binocular light sensitivity. The majority of retinal ganglion cells exhibited contrast-sensitive ON, OFF or ON-OFF light responses and even motion sensitivity; however, quite a few exhibited unusual responses (eg, light-induced suppression), presumably reflecting remodeling of the neural retina. Our data indicate that despite relatively low engraftment yield, pluripotent stem cell-derived cone precursors can elicit light responsiveness even at advanced degeneration stages. Further work is needed to improve engraftment yield and counteract retinal remodeling to achieve useful clinical applications.

摘要

视网膜营养不良通常会导致失明。因此,开发治疗干预措施以恢复视力至关重要。在这里,我们证明了多能干细胞衍生的锥细胞前体细胞能够在 Pde6brd1 小鼠(一种晚期光感受器退行性变模型)中植入并恢复光反应的能力。我们的数据表明,多达 1.5%的前体细胞整合到宿主视网膜中,分化为视锥细胞,并与宿主双极细胞紧密贴附。一半的移植小鼠表现出视觉行为,其中 33%表现出双眼光敏感性。大多数视网膜神经节细胞表现出对对比度敏感的 ON、OFF 或 ON-OFF 光反应,甚至运动敏感性;然而,相当多的细胞表现出异常反应(例如,光诱导抑制),可能反映了神经视网膜的重塑。我们的数据表明,尽管植入率相对较低,但多能干细胞衍生的锥细胞前体细胞即使在晚期退行性变阶段也能引发光反应。需要进一步的工作来提高植入率并对抗视网膜重塑,以实现有用的临床应用。

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