Multiple Sclerosis Program, Department of Neurology, School of Medicine, University of California Los Angeles, Los Angeles, CA 90095-1769, USA.
Neuroscience. 2009 Dec 29;164(4):1407-21. doi: 10.1016/j.neuroscience.2009.09.069. Epub 2009 Oct 2.
Axonal dysfunction as a result of persistent demyelination has been increasingly appreciated as a cause of functional deficit in demyelinating diseases such as multiple sclerosis. Therefore, it is crucial to understand the ultimate causes of ongoing axonal dysfunction and find effective measures to prevent axon loss. Our findings related to functional deficit and functional recovery of axons from a demyelinating insult are important preliminary steps towards understanding this issue. Cuprizone diet for 3-6 wks triggered extensive corpus callosum (CC) demyelination, reduced axon conduction, and resulted in loss of axon structural integrity including nodes of Ranvier. Replacing cuprizone diet with normal diet led to regeneration of myelin, but did not fully reverse the conduction and structural deficits. A shorter 1.5 wk cuprizone diet also caused demyelination of the CC, with minimal loss of axon structure and nodal organization. Switching to normal diet led to remyelination and restored callosal axon conduction to normal levels. Our findings suggest the existence of a critical window of time for remyelination, beyond which demyelinated axons become damaged beyond the point of repair and permanent functional loss follows. Moreover, initiating remyelination early within the critical period, before prolonged demyelination-induced axon damage ensues, will improve functional axon recovery and inhibit disease progression.
轴突功能障碍是脱髓鞘疾病(如多发性硬化症)功能缺陷的一个重要原因,这一点已逐渐被认识。因此,了解轴突功能障碍的根本原因并找到有效的预防轴突丢失的措施至关重要。我们的研究结果表明,脱髓鞘损伤后轴突的功能缺陷和功能恢复是理解这一问题的重要初步步骤。连续 3-6 周给予脱髓鞘毒素杯状醇饮食会导致胼胝体(CC)广泛脱髓鞘,轴突传导减少,并导致轴突结构完整性丧失,包括郎飞结。用正常饮食替代杯状醇饮食可导致髓鞘再生,但不能完全逆转传导和结构缺陷。持续 1.5 周的杯状醇饮食也会导致 CC 脱髓鞘,轴突结构和节段性组织丢失最小。切换到正常饮食会导致髓鞘再生,并将胼胝体轴突的传导恢复到正常水平。我们的研究结果表明,存在一个再髓鞘的关键时间窗口,超过这个时间窗口,脱髓鞘的轴突就会受到无法修复的损伤,导致永久性功能丧失。此外,在长时间脱髓鞘诱导的轴突损伤发生之前,在关键时期尽早开始髓鞘再生,将改善功能轴突的恢复并抑制疾病进展。