首页> 外文期刊>Molecular therapy: the journal of the American Society of Gene Therapy >Restoration of cone vision in the CNGA3-/- mouse model of congenital complete lack of cone photoreceptor function.
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Restoration of cone vision in the CNGA3-/- mouse model of congenital complete lack of cone photoreceptor function.

机译:先天性CNGA3-/-小鼠模型中视锥视力的恢复完全缺乏视锥光感受器功能。

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摘要

Congenital absence of cone photoreceptor function is associated with strongly impaired daylight vision and loss of color discrimination in human achromatopsia. Here, we introduce viral gene replacement therapy as a potential treatment for this disease in the CNGA3(-/-) mouse model. We show that such therapy can restore cone-specific visual processing in the central nervous system even if cone photoreceptors had been nonfunctional from birth. The restoration of cone vision was assessed at different stages along the visual pathway. Treated CNGA3(-/-) mice were able to generate cone photoreceptor responses and to transfer these signals to bipolar cells. In support, we found morphologically that treated cones expressed regular cyclic nucleotide-gated (CNG) channel complexes and opsins in outer segments, which previously they did not. Moreover, expression of CNGA3 normalized cyclic guanosine monophosphate (cGMP) levels in cones, delayed cone cell death and reduced the inflammatory response of Muller glia cells that is typical of retinal degenerations. Furthermore, ganglion cells from treated, but not from untreated, CNGA3(-/-) mice displayed cone-driven, light-evoked, spiking activity, indicating that signals generated in the outer retina are transmitted to the brain. Finally, we demonstrate that this newly acquired sensory information was translated into cone-mediated, vision-guided behavior.
机译:先天性视锥细胞感光功能的缺失与日光视力严重受损以及人色盲的颜色辨别力下降有关。在这里,我们介绍病毒基因替代疗法作为CNGA3(-/-)小鼠模型中该疾病的潜在治疗方法。我们表明,即使视锥细胞感光器从出生起就没有功能,这种疗法也可以恢复中枢神经系统视锥细胞特定的视觉处理。在视力路径的不同阶段评估视锥的恢复。经过处理的CNGA3(-/-)小鼠能够产生视锥细胞感光反应并将这些信号转移至双极细胞。作为支持,我们从形态学上发现,处理过的视锥细胞在外部片段中表达规则的环状核苷酸门控(CNG)通道复合物和视蛋白,而以前却没有。此外,CNGA3的表达在视锥细胞中标准化了环鸟苷单磷酸(cGMP)水平,延迟了视锥细胞死亡,并降低了视网膜变性典型的穆勒神经胶质细胞的炎症反应。此外,来自已处理但未处理的CNGA3(-/-)小鼠的神经节细胞表现出视锥细胞驱动的,光诱发的,刺突活性,表明在外部视网膜中产生的信号被传递到大脑。最后,我们证明了这种新获得的感觉信息已转化为视锥介导的视觉引导行为。

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