Tao-Cheng J H, Nagy Z, Brightman M W
Laboratory of Neurobiology, NIH/NINCDS, Bethesda, Maryland 20892.
J Neurosci. 1987 Oct;7(10):3293-9. doi: 10.1523/JNEUROSCI.07-10-03293.1987.
The belts of endothelial tight junctions, which impede diffusion between blood and brain, were reduced to fragmentary, small junctions in subcultured brain endothelium. When cocultured with the capillaries' nearest neighbor, the astrocytes, these endothelial tight junctions were enhanced in length, width, and complexity, as seen by en face views of the cell membranes with freeze-fracture electron microscopy. Gap junctions, common in brain endothelium in vitro but absent in mature brain capillaries in vivo, were markedly diminished in area from among the enhanced tight junctions of the cocultures. Thus, astrocytes in vitro play a role in the formation, extent, and configuration of the junctional complexes in brain endothelium, whose diffusion barrier may likewise be influenced by astrocytes in vivo.
内皮紧密连接带可阻碍血液与脑之间的扩散,在传代培养的脑内皮中,这些紧密连接带减少为零碎的小连接。当与毛细血管最近的邻居星形胶质细胞共培养时,通过冷冻断裂电子显微镜对细胞膜的正面观察可见,这些内皮紧密连接在长度、宽度和复杂性上都有所增强。缝隙连接在体外脑内皮中很常见,但在体内成熟脑毛细血管中不存在,在共培养物增强的紧密连接中,其面积显著减小。因此,体外的星形胶质细胞在脑内皮连接复合体的形成、范围和结构中发挥作用,其扩散屏障在体内可能同样受到星形胶质细胞的影响。