Bjartmar C, Hildebrand C, Loinder K
Department of Cell Biology, Faculty of Health Sciences, University of Linköping, Sweden.
Glia. 1994 Jul;11(3):235-44. doi: 10.1002/glia.440110304.
The microanatomy of ensheathing and early myelinating rat oligodendrocytes was analyzed through electron microscopic examination of serial sections. The study included cells in the spinal cord (SC) ventral funiculus and the corpus callosum (CC), containing early myelinating, prospective large axons and late myelinating, prospective small axons, respectively. The results show that ensheathment commences fetal day (F) 19 in the SC and 12 days postnatally (P12) in the CC. By then, multipolar SC and CC oligodendrocytes provide axons with uncompacted cytoplasmic sheaths. The average number of axons ensheathed by each such cell was 7 in the SC and 13 in the CC. The mean diameter of the ensheathed axons was 0.69 micron in the SC and 0.36 micron in the CC. The formation of compact myelin had clearly been initiated at birth in the SC and at P17 in the CC. At that stage, the mean number of myelinated axons per analyzed oligodendrocyte was 3 in the SC and 15 in the CC. The mean diameter of the myelinated axons was 1.02 micron in the SC and 0.54 micron in the CC. These observations show that myelin-related rat oligodendrocytes are morphologically heterogeneous. It also seems that this heterogeneity is related to time of onset of myelination and prospective axon diameter. Further, the data suggest that some oligodendrocytes reduce the number of sheaths initially elaborated before formation of compact myelin.
通过对连续切片的电子显微镜检查,分析了包绕和早期髓鞘形成的大鼠少突胶质细胞的微观解剖结构。该研究包括脊髓(SC)腹侧索和胼胝体(CC)中的细胞,分别含有早期髓鞘形成的、预期的大轴突和晚期髓鞘形成的、预期的小轴突。结果表明,在脊髓中包绕始于胚胎第19天(F19),在胼胝体中始于出生后12天(P12)。到那时,多极的脊髓和胼胝体少突胶质细胞为轴突提供未紧密化的细胞质鞘。每个这样的细胞包绕的轴突平均数量在脊髓中为7个,在胼胝体中为13个。被包绕轴突的平均直径在脊髓中为0.69微米,在胼胝体中为0.36微米。紧密髓鞘的形成在脊髓中显然始于出生时,在胼胝体中始于P17。在那个阶段,每个分析的少突胶质细胞髓鞘化轴突的平均数量在脊髓中为3个,在胼胝体中为15个。髓鞘化轴突的平均直径在脊髓中为1.02微米,在胼胝体中为0.54微米。这些观察结果表明,与髓鞘相关的大鼠少突胶质细胞在形态上是异质的。这种异质性似乎也与髓鞘形成的起始时间和预期轴突直径有关。此外,数据表明一些少突胶质细胞在紧密髓鞘形成之前减少了最初形成的鞘的数量。