Bunge R P, Bunge M B, Eldridge C F
Annu Rev Neurosci. 1986;9:305-28. doi: 10.1146/annurev.ne.09.030186.001513.
The availability of several methods for the preparation of SCs free of other cell types has allowed recent experimentation providing new insights into the capacity of SCs to synthesize, release, and organize extracellular matrix materials, particularly those of the basal lamina. When these SC populations are combined in tissue culture with pure populations of neurons capable of directing SC function (without fibroblasts), new aspects of interrelationships between these cell types have come to light. In this brief chapter we review the results from this experimental approach during the last decade, and suggest the implications these observations have for interpreting known differences in SC functional expression in various body regions as well as for understanding certain disease processes. Of particular note is the discovery of an apparently essential linkage between the function of the SCs in organizing and relating to basal lamina and their ability to ensheathe and myelinate axons. It now appears that SC functional expression requires an alliance not only with the nerve fiber but also with the ECM through the production and organization of a basal lamina.
有几种方法可用于制备不含其他细胞类型的雪旺细胞(SCs),这使得最近的实验能够为雪旺细胞合成、释放和组织细胞外基质材料,特别是基膜的细胞外基质材料的能力提供新的见解。当这些雪旺细胞群体在组织培养中与能够指导雪旺细胞功能的纯神经元群体(无成纤维细胞)相结合时,这些细胞类型之间相互关系的新方面就显现出来了。在这一简短的章节中,我们回顾了过去十年中这种实验方法的结果,并提出这些观察结果对于解释雪旺细胞在身体各个区域功能表达的已知差异以及理解某些疾病过程的意义。特别值得注意的是,发现雪旺细胞在组织和连接基膜中的功能与其包裹轴突和形成髓鞘的能力之间存在明显的重要联系。现在看来,雪旺细胞的功能表达不仅需要与神经纤维结盟,还需要通过基膜的产生和组织与细胞外基质结盟。