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兔集合管的形态学异质性。

Morphological heterogeneity of the rabbit collecting duct.

作者信息

Ridderstrale Y, Kashgarian M, Koeppen B, Giebisch G, Stetson D, Ardito T, Stanton B

机构信息

Department of Animal Physiology, Swedish University of Agricultural Sciences, Uppsala.

出版信息

Kidney Int. 1988 Nov;34(5):655-70. doi: 10.1038/ki.1988.230.

Abstract

The localization of carbonic anhydrase by histochemistry, of Na-K-ATPase by immunocytochemistry and of rod-shaped intramembranous particles by freeze-fracture electron microscopy, was determined in the collecting duct of rabbits. In the cortical collecting duct (CCD), rod-shaped particles, which are abundant in intercalated cells were observed in both the apical and basolateral membrane of all intercalated cells examined. In the outer stripe of the outer medullary collecting duct (OMCDo) a high density of rod-shaped particles was found only in the apical membrane of intercalated cells. All cells of the inner stripe of the outer medullary collecting duct (OMCDi) had rod-shaped particles in the apical membrane but not in the basolateral membrane. As the collecting duct entered the inner medulla the density of rod-shaped particles decreased until they were virtually absent in the terminal segment. Na-K-ATPase, localized to the basolateral membrane, was more abundant in principal cells than in intercalated cells in the CCD. In the OMCDo, staining was equal in principal and intercalated cells. All cells of the OMCDi and the inner medullary collecting duct (IMCD) stained for Na-K-ATPase. Carbonic anhydrase in the CCD was localized to the cell membranes and cytoplasm of intercalated cells. Principal cells did not stain for carbonic anhydrase. A similar pattern was seen in the OMCDo. In the outer region of the OMCDi most cells did not stain for carbonic anhydrase, whereas in the inner region the apical and lateral membranes of all cells stained for carbonic anhydrase. Weak cytoplasmic staining was occasionally seen. A similar pattern was seen in the initial half of the IMCD, while the terminal half of the IMCD did not stain. In this study, the localization of enzymes and rod-shaped intramembranous particles associated with Na+, K+, and H+ transport shows both segmental and cellular heterogeneity, and correlates with the known transport properties of tubule segments. The distribution of these enzymes and rod-shaped intramembranous particles is different in rabbits and rats, and may explain some of the functional differences between homologous segments in these species.

摘要

通过组织化学方法对碳酸酐酶进行定位,通过免疫细胞化学方法对钠钾ATP酶进行定位,并通过冷冻断裂电子显微镜对杆状膜内颗粒进行定位,这些研究均在兔的集合管中进行。在皮质集合管(CCD)中,在所检查的所有闰细胞的顶膜和基底外侧膜中均观察到大量存在于闰细胞中的杆状颗粒。在外髓集合管外带(OMCDo)中,仅在闰细胞的顶膜中发现高密度的杆状颗粒。外髓集合管内带(OMCDi)的所有细胞在顶膜中有杆状颗粒,但在基底外侧膜中没有。随着集合管进入内髓,杆状颗粒的密度降低,直至在终末段几乎消失。定位于基底外侧膜的钠钾ATP酶在主细胞中的含量比在CCD中的闰细胞中更为丰富。在OMCDo中,主细胞和闰细胞中的染色情况相同。OMCDi和内髓集合管(IMCD)的所有细胞均对钠钾ATP酶染色。CCD中的碳酸酐酶定位于闰细胞的细胞膜和细胞质。主细胞未对碳酸酐酶染色。在OMCDo中也观察到类似的模式。在OMCDi的外侧区域,大多数细胞未对碳酸酐酶染色,而在其内侧区域,所有细胞的顶膜和侧膜均对碳酸酐酶染色。偶尔可见弱细胞质染色。在IMCD的前半段观察到类似的模式,而IMCD的后半段未染色。在本研究中,与钠、钾和氢转运相关的酶和杆状膜内颗粒的定位显示出节段性和细胞异质性,并与肾小管节段的已知转运特性相关。这些酶和杆状膜内颗粒的分布在兔和大鼠中有所不同,这可能解释了这些物种中同源节段之间的一些功能差异。

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