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生长因子刺激大鼠运动皮质中风损伤后新皮质组织的生成及功能恢复。

Growth factor-stimulated generation of new cortical tissue and functional recovery after stroke damage to the motor cortex of rats.

作者信息

Kolb Bryan, Morshead Cindi, Gonzalez Claudia, Kim Mina, Gregg Christopher, Shingo Tetsuro, Weiss Samuel

机构信息

Department of Psychology, Canadian Centre for Behavioral Neuroscience, University of Lethbridge, Lethbridge, Alberta, Canada.

出版信息

J Cereb Blood Flow Metab. 2007 May;27(5):983-97. doi: 10.1038/sj.jcbfm.9600402. Epub 2006 Sep 20.

Abstract

Recent studies suggest that proliferation in the adult forebrain subventricular zone increases in response to a forebrain stroke and intraventricular infusions of growth factors enhance this response. The potential for growth factor infusions to regenerate the damaged motor cortex and promote recovery of motor function after stroke has not been examined. Here, we report that intraventricular infusions of epidermal growth factor and erythropoietin together, but not individually, promote substantial regeneration of the damaged cerebral cortex and reverse impairments in spontaneous and skilled motor tasks, in a rat model of stroke. Cortical regeneration and functional recovery occurred even when growth factor administration was delayed for up to 7 days after the stroke-induced lesion. Cell tracking demonstrated the contribution of neural precursors originating in the forebrain subventricular zone to the regenerated cortex. Strikingly, removal of the regenerated cortical tissue reversed the growth factor-induced functional recovery. These findings reveal that specific combinations of growth factors can mobilize endogenous adult neural stem cells to promote cortical tissue re-growth and functional recovery after stroke.

摘要

最近的研究表明,成年前脑脑室下区的增殖会因前脑中风而增加,脑室内注入生长因子会增强这种反应。中风后生长因子注入能否使受损运动皮层再生并促进运动功能恢复的潜力尚未得到研究。在此,我们报告,在大鼠中风模型中,脑室内同时注入表皮生长因子和促红细胞生成素,而非单独注入,可促进受损大脑皮层的大量再生,并逆转自发和熟练运动任务中的损伤。即使在中风诱导损伤后长达7天延迟给予生长因子,皮层再生和功能恢复仍会发生。细胞追踪显示,源自前脑脑室下区的神经前体细胞对再生皮层有贡献。令人惊讶的是,去除再生的皮层组织会逆转生长因子诱导的功能恢复。这些发现表明,特定组合的生长因子可动员内源性成年神经干细胞,以促进中风后皮层组织的再生和功能恢复。

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