Heinrich Christophe, Rouaux Caroline
Inserm U836, institut des neurosciences de Grenoble, centre de recherche Inserm U836-UJF-CHU, université Joseph Fourier, 38042 Grenoble Cedex 9, France.
Inserm U1118, fédération de médecine translationnelle de Strasbourg, université de Strasbourg, 67085 Strasbourg, France.
Med Sci (Paris). 2015 Jan;31(1):35-42. doi: 10.1051/medsci/20153101011. Epub 2015 Feb 6.
In order to overcome the quasi-total inability of the mammalian central nervous system to regenerate in response to injuries, and in parallel to the studies dedicated to prevent neuronal loss under these circumstances, alternative approaches based on the programming of pluripotent cells or the reprogramming of somatic cells into neurons have recently emerged. These uniquely combine growing knowledge of the mechanisms that underlie neurogenesis and neuronal specification during development to the most recent findings of the molecular and epigenetic mechanisms that govern the acquisition and maintenance of cellular identity. Here, we discuss the possibility to instruct the regeneration of the central nervous system from within for therapeutic purposes, in light of the recent works reporting on the generation of neurons by direct conversion of various cerebral cell types in vitro and in vivo.
为了克服哺乳动物中枢神经系统在损伤后几乎完全无法再生的问题,并且与致力于在这些情况下防止神经元损失的研究并行,最近出现了基于多能细胞编程或将体细胞重编程为神经元的替代方法。这些方法独特地将发育过程中神经发生和神经元特化的机制的不断增长的知识与控制细胞身份获取和维持的分子和表观遗传机制的最新发现结合起来。在此,鉴于最近有关体外和体内通过直接转化各种脑细胞类型生成神经元的研究报道,我们讨论了出于治疗目的从内部引导中枢神经系统再生的可能性。