首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Transplantation of glial cells enhances action potential conduction of amyelinated spinal cord axons in the myelin-deficient rat.
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Transplantation of glial cells enhances action potential conduction of amyelinated spinal cord axons in the myelin-deficient rat.

机译:胶质细胞的移植增强了髓磷脂缺乏大鼠中乙酰化脊髓轴突的动作电位传导。

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摘要

A central issue in transplantation research is to determine how and when transplantation of neural tissue can influence the development and function of the mammalian central nervous system. Of particular interest is whether electrophysiological function in the traumatized or diseased mammalian central nervous system can be improved by the replacement of cellular elements that are missing or damaged. Although it is known that transplantation of neural tissue can lead to functional improvement in models of neurological disease characterized by neuronal loss, less is known about results of transplantation in disorders of myelin. We report here that transplantation of glial cells into the dorsal columns of neonatal myelin-deficient rat spinal cords leads to myelination and a 3-fold increase in conduction velocity. We also show that impulses can propagate into and out of the transplant region and that axons myelinated by transplanted cells do not have impaired frequency-response properties. These results demonstrate that myelination following central nervous system glial cell transplantation enhances action potential conduction in myelin-deficient axons, with conduction velocity approaching normal values.
机译:移植研究的中心问题是确定神经组织移植如何以及何时能够影响哺乳动物中枢神经系统的发育和功能。特别令人关注的是,是否可以通过更换缺失或受损的细胞元件来改善受创伤或患病的哺乳动物中枢神经系统中的电生理功能。尽管已知神经组织的移植可以导致以神经元丢失为特征的神经疾病模型的功能改善,但对于髓磷脂疾病的移植结果知之甚少。我们在这里报告说,神经胶质细胞移植到新生儿髓鞘缺乏大鼠脊髓的背柱导致髓鞘形成和传导速度的3倍增加。我们还表明,脉冲可以传播进和出移植区域,并且由移植细胞产生髓鞘的轴突没有受损的频率响应特性。这些结果表明,中枢神经系统神经胶质细胞移植后的髓鞘形成增强了髓鞘缺乏轴突中动作电位的传导,传导速度接近正常值。

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