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RESTORATION OF VISUAL RESPONSES BY IN VIVO DELIVERY OF RHODOPSIN NUCLEIC ACIDS

机译:视紫红质核酸的体内递送恢复视觉反应

摘要

Nucleic acid vectors encoding light-gated cation-selective membrane channels, in particular channelrhodopsin-2 (Chop2), converted inner retinal neurons to photosensitive cells in photoreceptor-degenerated retina in an animal model. Such treatment restored visual perception and various aspects of vision. A method of restoring light sensitivity to a retina of a subject suffering from vision loss due to photoreceptor degeneration, as in retinitis pigmentosa or macular degeneration, is provided. The method comprises delivering to the subject by intravitreal or subretinal injection, the above nucleic acid vector which comprises an open reading frame encoding a rhodopsin, to which is operatively linked a promoter and transcriptional regulatory sequences, so that the nucleic acid is expressed in inner retinal neurons. These cells, normally light-insensitive, are converted to a light-sensitive state and transmit visual information to the brain, compensating for the loss, and leading to restoration of various visual capabilities.
机译:在动物模型中,编码光门控性阳离子选择性膜通道的核酸载体,特别是通道视紫红质2(Chop2),将内部视网膜神经元转化为感光器变性视网膜中的光敏细胞。这种治疗恢复了视觉感知和视觉的各个方面。提供了一种恢复对由于视网膜色素变性或黄斑变性而由于光感受器退化而遭受视力丧失的受试者的视网膜的光敏感性的方法。该方法包括通过玻璃体内或视网膜下注射向受试者递送上述核酸载体,该核酸载体包含编码视紫红质的开放阅读框,与视紫红质有效连接的启动子和转录调节序列,从而核酸在视网膜内表达神经元。这些通常对光不敏感的细胞会转换为对光敏感的状态,并将视觉信息传递到大脑,以补偿损失,并导致各种视觉功能的恢复。

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