Raine C S, Traugott U, Stone S H
J Neurocytol. 1978 Oct;7(5):541-53. doi: 10.1007/BF01260888.
The formation of fibrotic bridges from subpial astrocytes into the subarachnoid space of the spinal cord and the migration of Schwann cells to the central nervous system (C.N.S.) is appraised in chronically demyelinated C.N.S. lesions. Spinal cord tissue was studied from inbred, Strain 13 guinea pigs with chronic experimental allergic encephalomyelitis (EAE). It has been found that uncommitted Schwann cells are present around remyelinated fibres in nerve root entry zones, between meningeal cells at a distance from the roots and along blood vessels within the spinal cord parenchyma. It is speculated that these cells migrate via the above route to the C.N.S. In the present model, this invasion might be aided by glial fibrosis, a process which leads to surface irregularities in the spinal cord, an extensive extracellular space and possible breaches in the glia limitans through which Schwann cells might penetrate.
在慢性脱髓鞘的中枢神经系统病变中,评估了软膜下星形胶质细胞形成纤维桥进入脊髓蛛网膜下腔以及雪旺细胞向中枢神经系统迁移的情况。对患有慢性实验性过敏性脑脊髓炎(EAE)的近交系13品系豚鼠的脊髓组织进行了研究。研究发现,未分化的雪旺细胞存在于神经根进入区的再髓鞘化纤维周围、远离神经根的脑膜细胞之间以及脊髓实质内的血管周围。据推测,这些细胞通过上述途径迁移至中枢神经系统。在当前模型中,这种侵袭可能借助于胶质纤维化,这一过程会导致脊髓表面不规则、细胞外间隙扩大以及胶质界膜可能出现的破损,雪旺细胞可能借此穿透。