Sugimoto K, Fujii S, Yamashita K
Department of Anatomy, Nippon Medical School, Tokyo, Japan.
Exp Cell Res. 1991 Oct;196(2):353-61. doi: 10.1016/0014-4827(91)90271-u.
The relationship between stress fibers and tension in mesothelial cells of the bullfrog small intestine was examined by fluorescence cytochemistry using en face mesothelial cell preparations. In nontreated controls, actin revealed by rhodamine-phalloidin staining was localized only along the margins of the mesothelial cells. On the other hand, many stress fibers were formed in the mesothelial cells within 5-7 min after stretching of the intestinal wall in a given direction. The orientation of stress fibers within the cells was coincident with the direction of the tension applied. These cytoplasmic fibers disappeared almost completely from the mesothelial cells within 30 min after the release of tension. According to a difference in the intensity of tension necessary for stress fiber expression, the intestinal mesothelial cells were classified into two groups. Furthermore, cells containing stress fibers in each group showed a rapid increase in number once a given value of tension was applied. The present results indicate that the mesothelial cells of bullfrog small intestine may develop stress fibers to counteract tension exerted on the intestinal wall. Such stress fibers may serve to maintain cellular integrity by strengthening the cellular attachment to subepithelial tissue.
利用蛙小肠间皮细胞整装片,通过荧光细胞化学方法研究了牛蛙小肠间皮细胞中应力纤维与张力之间的关系。在未经处理的对照中,用罗丹明 - 鬼笔环肽染色显示的肌动蛋白仅定位于间皮细胞的边缘。另一方面,在沿特定方向拉伸肠壁后5 - 7分钟内,间皮细胞中形成了许多应力纤维。细胞内应力纤维的取向与施加的张力方向一致。在张力释放后30分钟内,这些细胞质纤维几乎完全从间皮细胞中消失。根据应力纤维表达所需张力强度的差异,肠间皮细胞被分为两组。此外,一旦施加给定值的张力,每组中含有应力纤维的细胞数量会迅速增加。目前的结果表明,牛蛙小肠间皮细胞可能会形成应力纤维以抵消施加在肠壁上的张力。这种应力纤维可能通过加强细胞与上皮下组织的附着来维持细胞完整性。