Black J A, Waxman S G, Hildebrand C
J Neurocytol. 1985 Dec;14(6):887-907. doi: 10.1007/BF01224803.
The axolemmal ultrastructure of nerve fibres within the retina-optic nerve junction (ROJ) from adult rats was examined by freeze-fracture electron microscopy. In the juxtaocular (proximal) region of the ROJ, all fibres are unmyelinated. The axons generally have a membrane ultrastructure similar to that of retinal nerve fibre layer axons, with a high density of intramembranous particles (IMPs) on the P-fracture face and a low density of IMPs on the E-face. However, along some axons in this region of the ROJ, localized aggregations of E-face IMPs are observed. At levels of the ROJ closer to the optic nerve proper, the unmyelinated fibres enter a transition zone in which the axons acquire myelin sheaths. By the distal boundary of the transitional zone (optic nerve proper), virtually all fibres are myelinated. Within the transitional zone, conventional axo-glial associations and axolemmal ultrastructure is present at nodes of Ranvier. In addition, atypical axo-glial relationships and atypical nodal segments are observed in this region. At some nodes, an isolated oligodendroglial process, the axolemma usually displays a paranodal-like ultrastructure. Finger-like oligodendroglial processes were also observed in association with non-nodal unmyelinated axon membrane. At these sites of association, the axon membrane tends to be indented and may have a paranodal-like morphology. Nodal axolemma may exhibit several atypical forms in the transition zone. At some nodes, the nodal axolemma has a low density of E-face particles. Also, nodes of extended linear length (approximately 2 micron) exhibit a lower-than-normal density of P-face IMPs. At heminodes, the axolemma immediately adjacent to the terminal loops lacks the usual nodal characteristics of high IMP density and high percentage of large particles. The results show that aberrant axo-glial associations accompanied by unusual ultrastructural characteristics of the axolemma are present in the ROJ of normal adult rats.
采用冷冻断裂电子显微镜技术,对成年大鼠视网膜 - 视神经连接部(ROJ)内神经纤维的轴膜超微结构进行了研究。在ROJ的近眼(近端)区域,所有纤维均无髓鞘。轴突的膜超微结构通常与视网膜神经纤维层轴突相似,P面断裂面上的膜内颗粒(IMPs)密度高,E面上的IMPs密度低。然而,在ROJ该区域的一些轴突上,可观察到E面IMPs的局部聚集。在ROJ更接近视神经本身的水平,无髓纤维进入一个过渡区,轴突在该区域获得髓鞘。到过渡区(视神经本身)的远端边界时,几乎所有纤维都有髓鞘。在过渡区内,郎飞结处存在传统的轴突 - 神经胶质联系和轴膜超微结构。此外,在该区域还观察到非典型的轴突 - 神经胶质关系和非典型的结段。在一些结处,一个孤立的少突胶质细胞突起,轴膜通常呈现 paranodal样超微结构。还观察到指状少突胶质细胞突起与非结无髓轴突膜相关。在这些关联部位,轴突膜往往有凹陷,可能具有 paranodal样形态。结轴膜在过渡区可能表现出几种非典型形式。在一些结处,结轴膜的E面颗粒密度低。此外,延长线性长度(约2微米)的结表现出低于正常密度的P面IMPs。在半结处,紧邻终环的轴膜缺乏通常的高IMP密度和高比例大颗粒的结特征。结果表明,正常成年大鼠的ROJ中存在异常的轴突 - 神经胶质联系,并伴有轴膜异常的超微结构特征。