再生(生物学)
轴突
神经科学
生物
脊髓
麻痹
脊髓损伤
医学
细胞生物学
外科
作者
Jordan W. Squair,Marco Milano,Alexandra de Coucy,Matthieu Gautier,Michael A. Skinnider,Nicholas D. James,Newton Cho,Anna Lasne,Claudia Kathe,Thomas H. Hutson,Steven Ceto,Laetitia Baud,Katia Galan,Viviana Aureli,Achilleas Laskaratos,Quentin Barraud,Timothy J. Deming,Richie E. Kohman,Bernard L. Schneider,Zhigang He
出处
期刊:Science
[American Association for the Advancement of Science]
日期:2023-09-21
卷期号:381 (6664): 1338-1345
被引量:61
标识
DOI:10.1126/science.adi6412
摘要
Axon regeneration can be induced across anatomically complete spinal cord injury (SCI), but robust functional restoration has been elusive. Whether restoring neurological functions requires directed regeneration of axons from specific neuronal subpopulations to their natural target regions remains unclear. To address this question, we applied projection-specific and comparative single-nucleus RNA sequencing to identify neuronal subpopulations that restore walking after incomplete SCI. We show that chemoattracting and guiding the transected axons of these neurons to their natural target region led to substantial recovery of walking after complete SCI in mice, whereas regeneration of axons simply across the lesion had no effect. Thus, reestablishing the natural projections of characterized neurons forms an essential part of axon regeneration strategies aimed at restoring lost neurological functions.
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