Sahenk Zarife, Serrano-Munuera Carmen, Chen Lei, Kakabadze Inga, Najagara Haikady N
Department of Neurology, Neuromuscular Disease Center, The Ohio State University, Means Hall 4th Floor, 1654 Upham Drive, Columbus, OH 43210, USA.
J Peripher Nerv Syst. 2003 Jun;8(2):116-27. doi: 10.1046/j.1529-8027.2003.03017.x.
Whether axonal regeneration in Charcot-Marie-Tooth (CMT) neuropathies is impaired has not been addressed in detail. Our studies in nude mice harboring xenografts from patients with different primary Schwann cell (SC) genetic defects suggested an intimate association between the onset of myelination and impairment in the growth capacity of nude mice axons engulfed by the mutant SCs. To assess the effects of peripheral myelin protein 22 (PMP22) gene duplication on the regeneration process, we conducted morphometric studies to generate temporal growth profiles of myelinated axons within the xenografts obtained from CMT1A patients and from healthy controls. Axon size distribution histograms in controls at different time intervals revealed that size differentiation of myelinated fibers within the grafts is established as early as 2 weeks, and that the temporal pattern of myelination of different sized axons has striking similarities to myelination during development. In PMP22 duplication grafts, the onset of myelination is delayed and the regeneration capacity of all fiber sizes is impaired. This defect, however, is most pronounced for the large diameter axons. In addition, significant large fiber loss occurred after 12 weeks with a concomitant new cycle of regeneration of small size axons. These studies show that the PMP22 duplication in SCs have profound effects on the regeneration process, which might be a contributing factor to preferential distal axonal loss.
夏科-马里-图斯(CMT)神经病中轴突再生是否受损尚未得到详细研究。我们对携带来自不同原发性施万细胞(SC)基因缺陷患者异种移植物的裸鼠进行的研究表明,髓鞘形成的开始与被突变SCs吞噬的裸鼠轴突生长能力受损之间存在密切关联。为了评估外周髓鞘蛋白22(PMP22)基因重复对再生过程的影响,我们进行了形态计量学研究,以生成从CMT1A患者和健康对照获得的异种移植物中髓鞘化轴突的时间生长曲线。不同时间间隔对照组的轴突大小分布直方图显示,移植物内髓鞘化纤维的大小分化早在2周时就已建立,并且不同大小轴突的髓鞘化时间模式与发育过程中的髓鞘化有显著相似之处。在PMP22重复的移植物中,髓鞘形成延迟,所有纤维大小的再生能力均受损。然而,这种缺陷在大直径轴突中最为明显。此外,12周后出现了明显的大纤维丢失,同时伴随着小尺寸轴突的新一轮再生。这些研究表明,SCs中的PMP22重复对再生过程有深远影响,这可能是导致远端轴突优先丢失的一个因素。