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骨骼肌毛细血管的生物力学:血流动力学阻力、内皮扩张性和伪足形成。

Biomechanics of skeletal muscle capillaries: hemodynamic resistance, endothelial distensibility, and pseudopod formation.

作者信息

Lee J, Schmid-Schönbein G W

机构信息

Institute for Biomedical Engineering, University of California--San Diego, La Jolla 92093-4012, USA.

出版信息

Ann Biomed Eng. 1995 May-Jun;23(3):226-46. doi: 10.1007/BF02584425.

Abstract

The objective of this study was to investigate the structure of capillaries in rat skeletal muscle and their mechanical properties over a wide range of transmural pressures. Capillaries were fixed at controlled pressures and studied with intravital and electron microscopy. Capillary lumen dimensions depend on the local transmural pressure, with irregular and partially collapsed cross-sections at low transmural pressures and circular cross-sections at elevated pressures. The average circumferential wall stress is a nonlinear function of the circumferential stretch. Elevation of the transcapillary pressure serves to increase the endothelial surface area exposed to the lumen and to the basement membrane while the average endothelial thickness and cell volume decrease. The number of vesicles in the endothelium and their average size decrease with the stretching of the endothelial cell. The balance of membrane area measurements on the vesicles and on the cell surface show that the total membrane surface is conserved at all pressures, and the vesicles become unfolded during stretching of the endothelial cells. This suggests that the vesicle membrane serves as a reservoir for the increase of endothelial surface membrane area during capillary distension. Under normal or elevated capillary pressure, virtually no evidence for pseudopod formation by the endothelial cells was detected. If the capillary transmural pressure was reduced to zero in the presence of autologous plasma for periods of about 10 min, limited evidence for pseudopods in less than 10% of the capillary sections was seen. If the muscle capillaries were perfused with plasmalyte and fixed at low pressures, all capillaries exhibited pseudopod formation. Addition of plasma proteins prevented most pseudopod formations. Endothelial pseudopods are depleted of vesicles and form sheet-like projections. Once pseudopods are formed at low pressure, they cannot readily be unfolded by elevation of the capillary transmural pressure. Pseudopods appear to consist of a crosslinked actin matrix and may have a strong effect on the resistance to blood flow in capillaries. These results may be relevant with respect to capillary blood flow at low pressures.

摘要

本研究的目的是研究大鼠骨骼肌中毛细血管的结构及其在广泛跨壁压力范围内的力学特性。毛细血管在可控压力下固定,并用活体显微镜和电子显微镜进行研究。毛细血管腔尺寸取决于局部跨壁压力,在低跨壁压力下横截面不规则且部分塌陷,在压力升高时为圆形横截面。平均周向壁应力是周向拉伸的非线性函数。跨毛细血管压力升高会增加暴露于管腔和基底膜的内皮表面积,而平均内皮厚度和细胞体积减小。内皮细胞中囊泡的数量及其平均大小随着内皮细胞的拉伸而减少。囊泡和细胞表面膜面积测量的平衡表明,在所有压力下总膜表面积保持不变,并且在内皮细胞拉伸过程中囊泡会展开。这表明囊泡膜在毛细血管扩张期间作为内皮表面膜面积增加的储存库。在正常或升高的毛细血管压力下,几乎未检测到内皮细胞形成伪足的证据。如果在自体血浆存在的情况下将毛细血管跨壁压力降至零约10分钟,在不到10%的毛细血管段中可见有限的伪足证据。如果用平衡盐溶液灌注肌肉毛细血管并在低压下固定,所有毛细血管都会出现伪足形成。添加血浆蛋白可防止大多数伪足形成。内皮伪足不含囊泡并形成片状突起。一旦在低压下形成伪足,通过升高毛细血管跨壁压力它们不能轻易展开。伪足似乎由交联的肌动蛋白基质组成,可能对毛细血管中的血流阻力有很大影响。这些结果可能与低压下的毛细血管血流有关。

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