首页> 美国卫生研究院文献>Journal of Visualized Experiments : JoVE >Performing Subretinal Injections in Rodents to Deliver Retinal Pigment Epithelium Cells in Suspension
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Performing Subretinal Injections in Rodents to Deliver Retinal Pigment Epithelium Cells in Suspension

机译:在啮齿动物中进行视网膜下注射以悬吊提供视网膜色素上皮细胞

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摘要

The conversion of light into electrical impulses occurs in the outer retina and is accomplished largely by rod and cone photoreceptors and retinal pigment epithelium (RPE) cells. RPE provide critical support for photoreceptors and death or dysfunction of RPE cells is characteristic of age-related macular degeneration (AMD), the leading cause of permanent vision loss in people age 55 and older. While no cure for AMD has been identified, implantation of healthy RPE in diseased eyes may prove to be an effective treatment, and large numbers of RPE cells can be readily generated from pluripotent stem cells. Several interesting questions regarding the safety and efficacy of RPE cell delivery can still be examined in animal models, and well-accepted protocols used to inject RPE have been developed. The technique described here has been used by multiple groups in various studies and involves first creating a hole in the eye with a sharp needle. Then a syringe with a blunt needle loaded with cells is inserted through the hole and passed through the vitreous until it gently touches the RPE. Using this injection method, which is relatively simple and requires minimal equipment, we achieve consistent and efficient integration of stem cell-derived RPE cells in between the host RPE that prevents significant amount of photoreceptor degeneration in animal models. While not part of the actual protocol, we also describe how to determine the extent of the trauma induced by the injection, and how to verify that the cells were injected into the subretinal space using in vivo imaging modalities. Finally, the use of this protocol is not limited to RPE cells; it may be used to inject any compound or cell into the subretinal space.
机译:光到电脉冲的转换发生在视网膜的外部,并且在很大程度上由视杆和视锥感光器以及视网膜色素上皮细胞(RPE)来完成。 RPE为感光器提供关键支持,RPE细胞的死亡或功能障碍是年龄相关性黄斑变性(AMD)的特征,这是55岁以上老年人永久性视力丧失的主要原因。尽管尚未找到治愈AMD的方法,但将健康的RPE植入患病眼中可能被证明是一种有效的治疗方法,并且多能干细胞可以很容易地产生大量RPE细胞。关于RPE细胞递送的安全性和有效性的几个有趣的问题仍然可以在动物模型中进行检查,并且已经开发出了用于注射RPE的公认方案。此处描述的技术已在多个研究中被多个小组使用,并且涉及首先使用锋利的针在眼睛上打一个洞。然后将带有装有细胞的钝针的注射器插入该孔中,并使其穿过玻璃体,直到其轻轻接触RPE。使用这种相对简单且需要最少设备的注射方法,我们在宿主RPE之间实现了干细胞来源的RPE细胞的一致而有效的整合,从而防止了动物模型中大量的感光细胞变性。虽然不是实际方案的一部分,但我们还描述了如何确定由注射引起的创伤的程度,以及如何使用体内成像方式来验证是否将细胞注射入了视网膜下间隙。最后,此协议的使用不限于RPE单元;它可用于将任何化合物或细胞注入视网膜下腔。

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