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近端小管细胞基部附近不同微观解剖结构的形态计量分析。

Morphometric analysis of distinct microanatomy near the base of proximal tubule cells.

作者信息

Welling L W, Welling D J, Holsapple J W, Evan A P

出版信息

Am J Physiol. 1987 Jul;253(1 Pt 2):F126-40. doi: 10.1152/ajprenal.1987.253.1.F126.

Abstract

Models of cell shape in the rabbit S2 proximal renal tubule were derived from transmission electron micrographs and compared with scanning micrographs. Standard morphometric procedures were used to measure basolateral cell membrane surface density (SVt) relative to total epithelial volume in numerous zones of cell height. In the basal 20% region we also measured the volume fraction (F) of intercellular spaces and calculated new surface densities in reference only to the intercellular volume, SVi = SVt/F, or to the cellular volume, SVc = SVt/(1-F). Combined use of these surface densities then enabled us to calculate the diameter, length, and separation of effectively cylindrical microvilli at the cell base. Assuming that lateral cell membranes are radially oriented in the apical region but disposed on microvillus like structures of arbitrary orientation at the cell base, an improved cell model was developed that agreed with the scanning picture throughout the entire cell height. Basal microvillar elements contain approximately 60% of the total basolateral cell membrane surface area and possibly constitute a hydrostatic resistive region for absorbate flow. These features have interesting physiological implications.

摘要

兔S2近端肾小管细胞形状模型源自透射电子显微镜图像,并与扫描显微镜图像进行了比较。使用标准形态测量程序来测量基底外侧细胞膜表面密度(SVt)与细胞高度众多区域中总上皮体积的相对关系。在基部20%区域,我们还测量了细胞间隙的体积分数(F),并仅参考细胞间隙体积计算新的表面密度,即SVi = SVt/F,或参考细胞体积计算,SVc = SVt/(1 - F)。然后,综合使用这些表面密度使我们能够计算细胞基部有效圆柱形微绒毛的直径、长度和间距。假设外侧细胞膜在顶端区域呈径向排列,但在细胞基部排列在任意取向的微绒毛样结构上,开发了一种改进的细胞模型,该模型在整个细胞高度上与扫描图像一致。基部微绒毛元件约占基底外侧细胞膜总面积的60%,可能构成吸收液流动的静水阻力区域。这些特征具有有趣的生理学意义。

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