视网膜内移植治疗光损伤视网膜的细胞替代。

M del Cerro, M F Notter, C del Cerro, S J Wiegand, D A Grover, E Lazar
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引用次数: 90

摘要

视网膜疾病导致的失明通常是光感受器细胞群广泛受损的结果,而形成神经视网膜的其他细胞类型相对幸免。在这种情况下,移植光感受器细胞可能为恢复一定程度的视觉功能提供希望。我们通过将未成熟的视网膜细胞移植到几乎完全缺乏光感受器细胞的晚期光毒性视网膜病变成年大鼠的眼睛中来测试这种方法的可行性。从新生大鼠身上分离出来的神经视网膜细胞被注射到宿主的视网膜中。这些细胞用荧光示踪剂Fast-blue标记,以便在宿主眼内识别。移植后存活时间为3 ~ 100天。光照射后眼底检查显示由于视网膜脉络膜血管床在光照射后大量减少而引起的苍白。在组织学上,宿主表现出形成整个视网膜外层的元素的大量减少。通过光学和电子显微镜观察,我们报告了移植的光感受器细胞簇的分化,以及这些细胞在宿主视网膜邻近区域的整合。荧光显微镜显示这些团簇是由荧光标记的细胞与未标记的宿主视网膜密切接触而形成的。电子显微镜下可以确定这些光感受器已经建立了突触接触。这些观察结果表明,将未成熟视网膜细胞成功移植到遭受广泛视网膜-脉络膜损伤的成人眼睛中是可行的。这些发现也支持视网膜移植是一种可能为视网膜修复研究开辟新途径的方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Intraretinal transplantation for rod-cell replacement in light-damaged retinas.

Blindness from retinal disease is often the consequence of extensive damage to the photoreceptor cell population, while other cell types which form the neural retina are relatively spared. In this setting, transplantation of photoreceptor cells could offer hope for the restoration of some degree of visual function. We tested the feasibility of this approach by transplanting immature retinal cells into the eyes of adult rats affected by late stage phototoxic retinopathy, which are almost totally devoid of photoreceptor cells. Dissociated neuroretinal cells from newborn rats were injected into the hosts' retinas. These cells were labelled with the fluorescent tracer Fast-blue for identification within the host eye. Survival time ranged from 3 to 100 post-transplantation days. Fundus examination of light-irradiated eyes showed pallor caused by a considerable reduction of the retino-choroidal vascular bed after light irradiation. Histologically the hosts exhibited decimation of the elements forming the outer layers throughout the entire retina. As visualized by light and electron microscopic procedures, we report the differentiation of clusters of transplanted photoreceptor cells, and the integration of these cells within the adjacent areas of the host retina. Fluorescence microscopy showed these clusters to be formed by fluorescently labelled cells developing in intimate contact with the unlabelled host retina. Electron microscopically it was possible to determine that these photoreceptors had established synaptic contacts. These observations indicate that successful transplantation of immature retinal cells is feasible into adult eyes that have suffered extensive retino-choroidal damage. These findings also support the concept that retinal transplantation is a procedure which may open new avenues into the study of retinal repair.

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