Martin P-M, Cifuentes-Diaz C, Garcia M, Goutebroze L, Girault J-A
Inserm UMR-S 839, institut du Fer-à-Moulin, 17, rue du Fer-à-Moulin, 75005 Paris, France.
Rev Neurol (Paris). 2008 Dec;164(12):1057-62. doi: 10.1016/j.neurol.2008.10.003. Epub 2008 Nov 28.
Myelination was a major step in the evolution of the nervous system. Appearing first in jaw fish, myelination allows the fast and secure propagation of action potentials at a low energetic cost, and without exaggerated increase in axonal diameter. In the peripheral nervous system of mammals, myelination results from the tight interactions between Schwann cells and axons, leading to the formation of highly differentiated domains along the axon. The molecular determinants of these interactions are starting to be well identified. Their understanding provides a precise framework to interpret the defects, which occur in pathological circumstances. This review summarizes the present state of knowledge concerning axoglial interactions in peripheral nerves.
髓鞘形成是神经系统进化中的一个重要步骤。髓鞘形成最早出现在有颌鱼类中,它能使动作电位以低能量成本快速且安全地传播,同时不会过度增加轴突直径。在哺乳动物的外周神经系统中,髓鞘形成源于施万细胞与轴突之间的紧密相互作用,导致沿轴突形成高度分化的区域。这些相互作用的分子决定因素已开始被明确识别。对它们的理解为解释病理情况下出现的缺陷提供了一个精确的框架。本综述总结了有关外周神经中轴突与神经胶质细胞相互作用的当前知识状态。