Méhes Elod, Czirók András, Hegedüs Balázs, Vicsek Tamás, Jancsik Veronika
Department of Anatomy and Histology, Faculty of Veterinary Science, Szent István University, Budapest, Hungary.
Cell Motil Cytoskeleton. 2002 Nov;53(3):203-13. doi: 10.1002/cm.10062.
Spatial correlation was observed between the localization of laminin-1 at the inner limiting membrane (ILM) and extensive Muller glial process arborization in the same area, as demonstrated by immunolabeling of Muller glial processes and laminin-1 in rat retinae in situ. To test if this spatial correlation is due to a functional relationship, we investigated the impact of laminin-1 on the motility of cultured primary rat and mouse retinal Muller glial cells by statistical analysis of computer-controlled videomicroscopic time-lapse images. We demonstrate that laminin-1 increases motility and path-searching activity of Muller cells in vitro and it also enhances the cells' process formation/withdrawal dynamism. The increase in path-searching activity and cell process dynamism indicates that there is a functional relationship between laminin-1 and Muller glial cells presumably involving signaling towards the cytoskeleton. We hypothesize that laminin-1 is involved in process arborization of Muller cells at the vitread border of the retina resulting in the formation of the functional barrier made up of Muller glial endfeet.
层粘连蛋白-1定位于内界膜(ILM),且在同一区域存在广泛的米勒胶质细胞分支,二者之间存在空间相关性,这在大鼠视网膜原位米勒胶质细胞和层粘连蛋白-1的免疫标记中得到了证实。为了检验这种空间相关性是否源于功能关系,我们通过对计算机控制的视频显微镜延时图像进行统计分析,研究了层粘连蛋白-1对原代培养的大鼠和小鼠视网膜米勒胶质细胞运动性的影响。我们证明,层粘连蛋白-1在体外可增加米勒细胞的运动性和路径探索活性,还能增强细胞的突起形成/回缩动态变化。路径探索活性和细胞突起动态变化的增加表明,层粘连蛋白-1与米勒胶质细胞之间存在功能关系,可能涉及向细胞骨架的信号传导。我们推测,层粘连蛋白-1参与了视网膜玻璃体侧边界处米勒细胞的分支形成,从而导致由米勒胶质细胞终足构成的功能屏障的形成。