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Biology and therapy of inherited retinal degenerative disease: insights from mouse models

机译:遗传性视网膜变性疾病的生物学和治疗:小鼠模型的见解

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Retinal neurodegeneration associated with the dysfunction or death of photoreceptors is a major cause of incurable vision loss. Tremendous progress has been made over the last two decades in discovering genes and genetic defects that lead to retinal diseases. The primary focus has now shifted to uncovering disease mechanisms and designing treatment strategies, especially inspired by the successful application of gene therapy in some forms of congenital blindness in humans. Both spontaneous and laboratory-generated mouse mutants have been valuable for providing fundamental insights into normal retinal development and for deciphering disease pathology. Here, we provide a review of mouse models of human retinal degeneration, with a primary focus on diseases affecting photoreceptor function. We also describe models associated with retinal pigment epithelium dysfunction or synaptic abnormalities. Furthermore, we highlight the crucial role of mouse models in elucidating retinal and photoreceptor biology in health and disease, and in the assessment of novel therapeutic modalities, including gene- and stem-cell-based therapies, for retinal degenerative diseases.
机译:与感光器功能障碍或死亡相关的视网膜神经变性是无法治愈的视力丧失的主要原因。在过去的二十年中,在发现导致视网膜疾病的基因和遗传缺陷方面取得了巨大的进步。现在的主要重点已经转移到揭示疾病机制和设计治疗策略,特别是受到基因疗法在人类某些形式的先天性失明中的成功应用的启发。自发的和实验室产生的小鼠突变体对于提供正常视网膜发育的基本见识和破译疾病病理学都非常有价值。在这里,我们提供了人类视网膜变性的小鼠模型的综述,主要关注影响光感受器功能的疾病。我们还描述了与视网膜色素上皮功能障碍或突触异常相关的模型。此外,我们强调了小鼠模型在阐明健康和疾病中的视网膜和感光细胞生物学以及评估视网膜退行性疾病的新型治疗方式(包括基于基因和干细胞的疗法)中的关键作用。

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