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蟾蜍膀胱的结构与其生理学的关系。

Structure of the toad's urinary bladder as related to its physiology.

作者信息

PEACHEY L D, RASMUSSEN H

出版信息

J Biophys Biochem Cytol. 1961 Aug;10(4):529-53. doi: 10.1083/jcb.10.4.529.

Abstract

The structure of the urinary bladder of the toad Bufo marinus was studied by light and electron microscopy. The epithelium covering the mucosal surface of the bladder is 3 to 10 microns thick and consists of squamous epithelial cells, goblet cells, and a third class of cells containing many mitochondria and possibly representing goblet cells in early stages of their secretory cycle. This epithelium is supported on a lamina propria 30 to several hundred microns thick and containing collagen fibrils, bundles of smooth muscle fibers, and blood vessels. The serosal surface of the bladder is covered by an incomplete mesothelium. The cytoplasm of the squamous epithelial cells, which greatly outnumber the other types of cells, is organized in a way characteristic of epithelial secretory cells. Mitochondria, smooth and rough surfaced endoplasmic reticulum, a Golgi apparatus, "multivesicular bodies," and isolated particles and vesicles are present. Secretion granules are found immediately under the plasma membranes of the free surfaces of the epithelial cells and are seen to fuse with these membranes and release their contents to contribute to a fibrous surface coating found only on the free mucosal surfaces of the cells. Beneath the plasma membranes on these surfaces is an additional, finely granular component. Lateral and basal plasma membranes are heavily plicated and appear ordinary in fine structure. The cells of the epithelium are tightly held together by a terminal bar apparatus and sealed together, with an intervening space of only 0.02 mmicro near the bladder lumen, in such a way as to prevent water leakage between the cells. It is demonstrated in in vitro experiments that water traversing the bladder wall passes through the cytoplasm of the epithelial cells and that a vesicle transport mechanism is not involved. In vitro experiments also show that the basal (serosal) surfaces of the epithelial cells are freely permeable to water, while the free (mucosal) surfaces are normally relatively impermeable but become permeable when the serosal surface of the bladder is treated with neurohypophyseal hormones. The permeability barrier found at the mucosal surface may be represented, structurally, either by the filamentous layer lying external to the plasma membrane, by the intracellular, granular component found just under the plasma membrane, or by both of these components of the mucosal surface complex. The polarity of the epithelial sheet is emphasized and related to the physiological role of the urinary bladder in amphibian water balance mechanisms.

摘要

采用光镜和电镜对海蟾蜍(Bufo marinus)的膀胱结构进行了研究。覆盖膀胱黏膜表面的上皮厚度为3至10微米,由鳞状上皮细胞、杯状细胞和第三类细胞组成,第三类细胞含有许多线粒体,可能代表处于分泌周期早期的杯状细胞。该上皮由一层厚30至数百微米的固有层支撑,固有层包含胶原纤维、平滑肌纤维束和血管。膀胱的浆膜表面覆盖着一层不完整的间皮。鳞状上皮细胞的数量远多于其他类型的细胞,其细胞质的组织方式具有上皮分泌细胞的特征。细胞内有线粒体、光滑和粗糙的内质网、高尔基体、“多囊泡体”以及孤立的颗粒和小泡。分泌颗粒位于上皮细胞游离表面的质膜下方,可见其与这些膜融合并释放内容物,形成仅存在于细胞游离黏膜表面的纤维状表面涂层。这些表面的质膜下方还有一种额外的细颗粒成分。侧面和基底质膜有大量褶皱,其精细结构看起来正常。上皮细胞通过终末棒装置紧密相连并密封在一起,在膀胱腔附近细胞间仅有0.02毫米的间隙,以防止水分在细胞间渗漏。体外实验表明,穿过膀胱壁的水通过上皮细胞的细胞质,不涉及囊泡运输机制。体外实验还表明,上皮细胞的基底(浆膜)表面对水是自由通透的,而游离(黏膜)表面通常相对不通透,但当膀胱的浆膜表面用神经垂体激素处理时会变得通透。在黏膜表面发现的渗透屏障,在结构上可能由位于质膜外部的丝状层、质膜下方发现的细胞内颗粒成分或黏膜表面复合体的这两种成分共同代表。强调了上皮层的极性,并将其与膀胱在两栖动物水平衡机制中的生理作用相关联。

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