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首页> 外文期刊>The Journal of biological chemistry >Induction of Retinal Progenitors and Neurons from Mammalian Müller Glia under Defined Conditions
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Induction of Retinal Progenitors and Neurons from Mammalian Müller Glia under Defined Conditions

机译:在定义条件下哺乳动物祖细胞和神经元的诱导

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Vision impairment caused by loss of retinal neurons affects millions of people worldwide, and currently, there is no effective treatment. Müller glia of mammalian retina may represent an under-recognized and potential source for regeneration of a wide range of retinal cell types, including retinal ganglion cells and photoreceptors. Here, we demonstrated that mouse Müller glia cells have the capacity to be reprogrammed into the retinal neuronal cell fate and are competent to give rise to photoreceptors under a defined culture condition. Inactivation of p53 released proliferation restriction of Müller glia and significantly enhanced the induction of retinal progenitor from Müller glia in culture. Moreover, following the ocular transplantation, the Müller glia-derived progenitors were differentiated toward the fates of photoreceptors and retinal ganglion cells. Together, these results demonstrate the feasibility of using Müller glia as a potential source for retinal repair and regeneration.
机译:视网膜神经元损失引起的视觉损伤影响全球数百万人,目前没有有效的待遇。哺乳动物视网膜的Müller峡谷可以代表众所周知的和潜在来源,用于再生各种视网膜细胞类型,包括视网膜神经节细胞和光感受器。在这里,我们证明了小鼠Müller胶质细胞的能力将能力重新编程为视网膜神经元细胞命运,并且能够在规定的培养条件下产生感光体。 P53的失活释放了Müller峡谷的增殖限制,并显着增强了MüllerGlia在培养中的视网膜祖细胞的诱导。此外,在眼移植物之后,Müller胶林衍生的祖细胞朝向感光体和视网膜神经节细胞的束缚。这些结果一起表明使用MüllerGlia作为视网膜修复和再生的潜在来源的可行性。

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