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毛细血管窗孔中丝状分子筛栓子的电子显微镜显示。

Electron microscopic demonstrations of filamentous molecular sieve plugs in capillary fenestrae.

作者信息

Rostgaard J, Qvortrup K

机构信息

Department of Medical Anatomy Section B, University of Copenhagen, The Panum Institute, 3 Blegdamsvej, Copenhagen N, DK-2200, Denmark.

出版信息

Microvasc Res. 1997 Jan;53(1):1-13. doi: 10.1006/mvre.1996.1987.

Abstract

The permeability of capillaries is usually explained with reference to "small pores," permeable to water and small solutes, and "large pores," permeable to proteins. Fenestrated capillaries are far more permeable to water and small solutes than nonfenestrated capillaries; moreover, the permeability is highest in the capillaries with the most fenestrae. This suggests that the small pores reside in the fenestral diaphragms; however, no such pores have been illustrated using electron microscopy. In an attempt to clarify this controversy, fenestrated capillaries in the small intestine, stomach, and kidney of the rat were reinvestigated by electron microscopy. A new method of vascular perfusion-fixation was employed, which included the use of glutaraldehyde dissolved in an oxygen-carrying blood substitute (fluorocarbon) and delivered by a peristaltic pump controlled by pressure feedback. The investigation disclosed a prominent endocapillary surface coat, about 50-100 nm thick, and the existence of bush-like filamentous sieve plugs in the fenestrae. Each filamentous plug was composed of 20-40 filaments, each filament measuring 300-400 nm in length and 5-10 nm in thickness. The filamentous plugs have tentatively been named fascinae fenestrae, because they resemble fascines and may also function as such.

摘要

毛细血管的通透性通常参照“小孔”来解释,这些小孔对水和小分子溶质具有通透性,还有“大孔”,对蛋白质具有通透性。有孔毛细血管对水和小分子溶质的通透性远高于无孔毛细血管;此外,在窗孔最多的毛细血管中通透性最高。这表明小孔存在于窗孔隔膜中;然而,电子显微镜并未显示出此类小孔。为了澄清这一争议,通过电子显微镜对大鼠小肠、胃和肾脏中的有孔毛细血管进行了重新研究。采用了一种新的血管灌注固定方法,该方法包括使用溶解在携氧血液替代品(氟碳化合物)中的戊二醛,并通过压力反馈控制的蠕动泵输送。研究发现了一个突出的毛细血管内表面涂层,约50 - 100纳米厚,并且在窗孔中存在灌木状丝状筛塞。每个丝状筛塞由20 - 40根细丝组成,每根细丝长度为300 - 400纳米,厚度为5 - 10纳米。这些丝状筛塞暂被命名为窗孔束,因为它们类似于柴捆,也可能起到类似的作用。

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