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发育中的正常和胶质细胞缺陷型大鼠脊髓中朗飞结处的结周星形胶质细胞突起。

Perinodal astrocytic processes at nodes of Ranvier in developing normal and glial cell deficient rat spinal cord.

作者信息

Sims T J, Waxman S G, Black J A, Gilmore S A

出版信息

Brain Res. 1985 Jul 1;337(2):321-31. doi: 10.1016/0006-8993(85)90069-1.

Abstract

This study examined, during normal development and during the development of a glial cell deficient axon population, the nature of astrocyte involvement at the central nodes of Ranvier on spinal cord axons. One condition examined was the ventral funiculus of normal 7-day-old rats. At this age, the lumbar spinal cord underwent an active phase of gliogenesis, and axons were seen in various stages of myelination. Perinodal astrocytic processes were routinely observed at nodes of axons on which myelin sheaths exceeded 8 compact lamellae. Perinodal astrocytic processes were also seen in close proximity to axolemma at most developing nodes. This study also examined the lumbar spinal cords of rats which were X-irradiated on the third postnatal day. This procedure caused a profound reduction in the astrocyte and oligodendrocyte population in 13- and 18-day-old rats, while sparing the neuronal elements. Thus, axo-glial relationships observed in this tissue are unlikely to be random occurrences. Despite the reduction in glial cells, some oligodendrocyte-myelinated axons were observed in the irradiated spinal cords. Perinodal astrocytes were seen at all oligodendrocyte-derived nodes observed in the irradiated cord and appeared to have a specific relationship to the node of Ranvier. The presence of astrocytic processes at the normal, developing node and at the nodes in glial cell deficient spinal cords suggests that astrocytes may be necessary to the function of nodal axolemma. In irradiated spinal cords, where the glial cells are markedly reduced, apposition between astrocytic and oligodendrocytic membrane at the paranode and internode was also seen and was so common that it is highly unlikely to be due to random occurrences. These observations further suggest that in addition to the presumptive role at the nodes, astrocytes may play an inductive or supportive role in the development and maintenance of central myelin.

摘要

本研究在正常发育过程以及胶质细胞缺陷轴突群体的发育过程中,考察了星形胶质细胞在脊髓轴突郎飞结中央节点的参与性质。所考察的一种情况是正常7日龄大鼠的腹侧索。在这个年龄,腰段脊髓经历了一个活跃的胶质细胞生成阶段,并且可以看到轴突处于不同的髓鞘形成阶段。在髓鞘超过8个紧密板层的轴突节点处,常规观察到结周星形胶质细胞突起。在大多数发育中的节点,也可看到结周星形胶质细胞突起紧邻轴膜。本研究还考察了出生后第3天接受X射线照射的大鼠的腰段脊髓。该操作导致13日龄和18日龄大鼠的星形胶质细胞和少突胶质细胞数量大幅减少,而神经元成分未受影响。因此,在该组织中观察到的轴突与胶质细胞的关系不太可能是随机发生的。尽管胶质细胞数量减少,但在受照射的脊髓中仍观察到一些少突胶质细胞髓鞘化的轴突。在受照射脊髓中观察到的所有少突胶质细胞来源的节点处都可见到结周星形胶质细胞,并且它们似乎与郎飞结有特定关系。在正常发育节点以及胶质细胞缺陷脊髓的节点处存在星形胶质细胞突起,这表明星形胶质细胞可能是节点轴膜功能所必需的。在胶质细胞明显减少的受照射脊髓中,还可见到星形胶质细胞膜与少突胶质细胞膜在 paranode和 internode处的并置,而且这种情况非常普遍,极不可能是随机发生的。这些观察结果进一步表明,除了在节点处的假定作用外,星形胶质细胞可能在中枢髓鞘的发育和维持中发挥诱导或支持作用。

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