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大鼠视神经胶质生成改变后发育中轴突轴膜的分子结构

Molecular structure of the axolemma of developing axons following altered gliogenesis in rat optic nerve.

作者信息

Black J A, Waxman S G

出版信息

Dev Biol. 1986 Jun;115(2):301-12. doi: 10.1016/0012-1606(86)90251-4.

Abstract

Axonal and axolemmal development of fibers from rat optic nerves in which gliogenesis was severely delayed by systemic injection of 5-azacytidine (5-AZ) was examined by freeze-fracture electron microscopy. In neonatal (0-2 days) rat optic nerves, all fibers lack myelin, whereas in the adult, virtually all axons are myelinated. The axolemma of neonatal premyelinated fibers is relatively undifferentiated. The P-fracture face (P-face) displays a moderate (approximately 550/micron 2) density of intramembranous particles (IMPs), whereas the E-fracture face (E-face) has few IMPs (approximately 125/micron 2) present. By 14 days of age, approximately 25% of the axons within control optic nerves are ensheathed or myelinated, with the remaining axons premyelinated. The ensheathed and myelinated fibers display increased axonal diameter compared to premyelinated axons, and these larger caliber fibers exhibit marked axonal membrane differentiation. Notably, the P-face IMP density of ensheathed and myelinated fibers is substantially increased compared to premyelinated axolemma, and, at nodes of Ranvier, the density of E-face particles is moderately high (approximately 1300/micron 2), in comparison to internodal or premyelinated E-face axolemma. In optic nerves from 14-day-old 5-AZ-treated rats, few oligodendrocytes are present, and the percentage of myelinated fibers is markedly reduced. Despite delayed gliogenesis, some unensheathed axons within 5-AZ-treated optic nerves display an increased axonal diameter compared to premyelinated fibers. Most of these large caliber fibers also exhibit a substantial increase in P-face IMP density. Small (less than 0.4 micron) diameter unensheathed axons within treated optic nerves maintain a P-face IMP density similar to that of control premyelinated fibers. Regions of increased E-face particle density were not observed. The results demonstrate that some aspects of axolemma differentiation continue despite delayed gliogenesis and the absence of glial ensheathment, and suggest that axolemmal ultrastructure is, at least in part, independent of glial cell association.

摘要

通过冷冻断裂电子显微镜检查了系统性注射5-氮杂胞苷(5-AZ)导致神经胶质生成严重延迟的大鼠视神经纤维的轴突和轴膜发育。在新生(0-2天)大鼠视神经中,所有纤维均无髓鞘,而在成体中,几乎所有轴突都有髓鞘。新生前髓鞘化纤维的轴膜相对未分化。P断裂面(P面)显示出中等密度(约550/μm²)的膜内颗粒(IMPs),而E断裂面(E面)存在的IMPs较少(约125/μm²)。到14日龄时,对照视神经中约25%的轴突被包裹或有髓鞘,其余轴突为前髓鞘化。与前髓鞘化轴突相比,被包裹和有髓鞘的纤维轴突直径增加,这些较大直径的纤维表现出明显的轴突膜分化。值得注意的是,与前髓鞘化轴膜相比,被包裹和有髓鞘纤维的P面IMP密度显著增加,并且在郎飞结处,E面颗粒的密度与节间或前髓鞘化E面轴膜相比适中较高(约1300/μm²)。在14日龄5-AZ处理大鼠的视神经中,少突胶质细胞很少,有髓鞘纤维的百分比明显降低。尽管神经胶质生成延迟,但与前髓鞘化纤维相比,5-AZ处理的视神经中一些未被包裹的轴突轴突直径增加。这些大直径纤维中的大多数P面IMP密度也显著增加。处理过的视神经中直径小(小于0.4μm)的未被包裹轴突保持与对照前髓鞘化纤维相似的P面IMP密度。未观察到E面颗粒密度增加的区域。结果表明,尽管神经胶质生成延迟且没有神经胶质包裹,轴膜分化的某些方面仍在继续,这表明轴膜超微结构至少部分独立于神经胶质细胞的关联。

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