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首页> 外文期刊>Цитология >Electron-microscopical, immunocytochemical and fluorescent-microscopical study of reorganization of the microtubule system in granular cells of frog urinary bladder after water transport induction
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Electron-microscopical, immunocytochemical and fluorescent-microscopical study of reorganization of the microtubule system in granular cells of frog urinary bladder after water transport induction

机译:电子 - 微观,免疫细胞化学和荧光显微镜 - 微管系统重组中的微管系统在水运诱导后青蛙膀胱颗粒细胞

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摘要

Structural changes in organization of the microtubule system in granular cells of frog urinary bladder after water transport induction by vasopressin were studied by methods of electron, microscopy and immunocytochemistry. It is shown that in steady-state conditions microtubules form a wide network equally distributed in the whole cytoplasm of granular cells. After vasopressin action, the amount of microtubules increases in the apical region of the cytoplasm. A predominant orientation of microtubules, perpendicular to the apical membrane direction, appears. A structural association of microtubules with specific granules and large vacuoles was observed. A supposition is advanced about association of the described microtubule system reorganization with the activation of vectorial intracellular transport occurring after transepithelial water transport induction.
机译:通过电子,显微镜和免疫细胞化学方法研究了瓦塞纳素水运输诱导后青蛙尿膀胱颗粒细胞组织的结构变化。 结果表明,在稳态条件下,微管形成诸如粒状细胞的整个细胞质上的宽网络。 在血管加压素作用后,微管的量增加了细胞质的顶端区域。 出现垂直于顶端膜方向的微管的主要取向。 观察到具有特定颗粒和大型空泡的微管状的结构缔合。 关于在Transepithelial水传输诱导后发生的载体细胞内传输的激活,预测是关于所描述的微管系统重组的关联。

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