Ryder M I, Weinreb R N
Invest Ophthalmol Vis Sci. 1986 Sep;27(9):1305-11.
Many cellular functions involve the complex network of actin filaments, microtubules, and intermediate filaments collectively known as the cytoskeleton. Stereo transmission electron microscopic observations of whole cynomolgus monkey trabecular cells, which were extracted, S-1 labeled, and critical-point dried, were employed to simultaneously identify these three major cytoskeletal systems and visualize their three-dimensional nature. A double fluorescence technique for actin and microtubules was used to provide a broad view of cytoskeletal relationships within the cell. Actin microfilaments were the most prominent elements of the cytoskeleton. They appeared as bundles in stress fibers. Between stress fiber bundles, a continuous meshwork of microfilaments and intermediate filaments could be seen. Numerous microtubules radiated from the centriole region to the cell periphery. This comprehensive overview of the cytoskeleton of the cynomolgus monkey trabecular cell can be used to understand structure-function relationships of the trabecular cell cytoskeleton and its influence on outflow facility.
许多细胞功能涉及肌动蛋白丝、微管和中间丝的复杂网络,它们统称为细胞骨架。利用立体透射电子显微镜对提取、S-1标记并临界点干燥的食蟹猴小梁细胞进行观察,以同时识别这三种主要的细胞骨架系统并可视化其三维结构。采用肌动蛋白和微管的双荧光技术,以全面观察细胞内细胞骨架的关系。肌动蛋白微丝是细胞骨架中最突出的成分。它们在应力纤维中呈束状出现。在应力纤维束之间,可以看到微丝和中间丝的连续网络。许多微管从中心粒区域向细胞周边辐射。对食蟹猴小梁细胞细胞骨架的这一全面概述,可用于理解小梁细胞细胞骨架的结构-功能关系及其对房水流出易度的影响。