Monocyte Invasion into the Retina Restricts the Regeneration of Neurons from Müller Glia.

IF 4.4 2区 医学 Q1 NEUROSCIENCES
Nicolai Blasdel, Sucheta Bhattacharya, Phoebe C Donaldson, Thomas A Reh, Levi Todd
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引用次数: 0

Abstract

Endogenous reprogramming of glia into neurogenic progenitors holds great promise for neuron restoration therapies. Using lessons from regenerative species, we have developed strategies to stimulate mammalian Müller glia to regenerate neurons in vivo in the adult retina. We have demonstrated that the transcription factor Ascl1 can stimulate Müller glia neurogenesis. However, Ascl1 is only able to reprogram a subset of Müller glia into neurons. We have reported that neuroinflammation from microglia inhibits neurogenesis from Müller glia. Here we found that the peripheral immune response is a barrier to CNS regeneration. We show that monocytes from the peripheral immune system infiltrate the injured retina and negatively influence neurogenesis from Müller glia. Using CCR2 knock-out mice of both sexes, we found that preventing monocyte infiltration improves the neurogenic and proliferative capacity of Müller glia stimulated by Ascl1. Using scRNA-seq analysis, we identified a signaling axis wherein Osteopontin, a cytokine highly expressed by infiltrating immune cells is sufficient to suppress mammalian neurogenesis. This work implicates the response of the peripheral immune system as a barrier to regenerative strategies of the retina.

单核细胞侵入视网膜限制了神经元从 Müller 胶质再生。
内源性将胶质细胞重编程为神经原祖细胞为神经元恢复疗法带来了巨大希望。利用再生物种的经验,我们开发了刺激哺乳动物 Müller 胶质在成体视网膜中再生神经元的策略。我们已经证明转录因子Ascl1可以刺激Müller神经胶质细胞神经发生。然而,Ascl1只能将一部分Müller胶质细胞重编程为神经元。我们曾报道过,小胶质细胞的神经炎症会抑制 Müller 胶质的神经发生。在这里,我们发现外周免疫反应是中枢神经系统再生的障碍。我们发现,来自外周免疫系统的单核细胞会渗入受伤的视网膜,并对来自 Müller 胶质的神经发生产生负面影响。通过使用 CCR2 基因敲除的雌雄小鼠,我们发现阻止单核细胞浸润可提高 Müller 胶质在 Ascl1 刺激下的神经发生和增殖能力。通过 scRNA-seq 分析,我们确定了一个信号轴,其中浸润免疫细胞高表达的细胞因子 Osteopontin 足以抑制哺乳动物的神经发生。这项工作表明,外周免疫系统的反应是视网膜再生策略的一个障碍。意义声明 哺乳动物中枢神经系统神经元的再生极其有限。转基因过表达朊病毒转录因子 Ascl1 能使哺乳动物视网膜胶质细胞再生出一些因损伤而丢失的神经元。我们发现,在这种对损伤的再生反应过程中,来自外周的单核细胞会侵入神经视网膜,这些炎症细胞会对 Müller 胶质重编程为神经原祖细胞的能力产生负面调节。当单核细胞浸润视网膜受到抑制时,Müller胶质细胞再生神经元的能力就会显著增强。这项研究表明,外周免疫调节是加强内源性神经元替代策略的一种工具。
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来源期刊
Journal of Neuroscience
Journal of Neuroscience 医学-神经科学
CiteScore
9.30
自引率
3.80%
发文量
1164
审稿时长
12 months
期刊介绍: JNeurosci (ISSN 0270-6474) is an official journal of the Society for Neuroscience. It is published weekly by the Society, fifty weeks a year, one volume a year. JNeurosci publishes papers on a broad range of topics of general interest to those working on the nervous system. Authors now have an Open Choice option for their published articles
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