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人多能干细胞重编程产生可移植的 Cone 光感受器细胞群体,对人类视网膜发育的概述。

Recapitulation of Human Retinal Development from Human Pluripotent Stem Cells Generates Transplantable Populations of Cone Photoreceptors.

机构信息

Department of Genetics, University College London Institute of Ophthalmology, 11-43 Bath Street, London EC1V 9EL, UK.

Stem Cells and Regenerative Medicine Section, UCL Great Ormond Street Institute of Child Health, University College London, London WC1N 1EH, UK.

出版信息

Stem Cell Reports. 2017 Sep 12;9(3):820-837. doi: 10.1016/j.stemcr.2017.07.022. Epub 2017 Aug 24.

Abstract

Transplantation of rod photoreceptors, derived either from neonatal retinae or pluripotent stem cells (PSCs), can restore rod-mediated visual function in murine models of inherited blindness. However, humans depend more upon cone photoreceptors that are required for daylight, color, and high-acuity vision. Indeed, macular retinopathies involving loss of cones are leading causes of blindness. An essential step for developing stem cell-based therapies for maculopathies is the ability to generate transplantable human cones from renewable sources. Here, we report a modified 2D/3D protocol for generating hPSC-derived neural retinal vesicles with well-formed ONL-like structures containing cones and rods bearing inner segments and connecting cilia, nascent outer segments, and presynaptic structures. This differentiation system recapitulates human photoreceptor development, allowing the isolation and transplantation of a pure population of stage-matched cones. Purified human long/medium cones survive and become incorporated within the adult mouse retina, supporting the potential of photoreceptor transplantation for treating retinal degeneration.

摘要

将源自新生视网膜或多能干细胞 (PSCs) 的杆状光感受器移植,可以恢复遗传性失明的小鼠模型中的杆状介导的视觉功能。然而,人类更依赖于用于日光、颜色和高分辨率视觉的锥状光感受器。事实上,涉及锥状光感受器丧失的黄斑视网膜病变是失明的主要原因。开发基于干细胞的黄斑病变治疗方法的一个重要步骤是能够从可再生来源中产生可移植的人类锥状光感受器。在这里,我们报告了一种改良的 2D/3D 方案,用于生成具有良好形成的 ONL 样结构的 hPSC 衍生的神经视网膜小泡,其中包含具有内节和连接纤毛、新生外节和突触前结构的杆状光感受器和锥状光感受器。这种分化系统再现了人类光感受器的发育,允许分离和移植纯阶段匹配的锥状光感受器。纯化的人类长/中锥状光感受器存活并整合到成年小鼠视网膜中,为治疗视网膜变性提供了光感受器移植的潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6e0b/5599247/1c619a8bf641/fx1.jpg

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