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Microvascular Endothelial Cells Exhibit Optimal Aspect Ratio for Minimizing Flow Resistance

机译:微血管内皮细胞具有最佳的长宽比可最大程度地减小流动阻力

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摘要

A recent analytical solution of the three-dimensional Stokes flow through a bumpy tube predicts that for a given bump area, there exists an optimal circumferential wavenumber which minimizes flow resistance. This study uses measurements of microvessel endothelial cell morphology to test whether this prediction holds in the microvasculature. Endothelial cell (EC) morphology was measured in blood perfused in situ microvessels in anesthetized mice using confocal intravital microscopy. EC borders were identified by immunofluorescently labeling the EC surface molecule ICAM-1 which is expressed on the surface but not in the EC border regions. Comparison of this theory with extensive in situ measurements of microvascular EC geometry in mouse cremaster muscle using intravital microscopy reveals that the spacing of EC nuclei in venules ranging from 27 to 106 μm in diameter indeed lies quite close to this predicted optimal configuration. Interestingly, arteriolar ECs are configured to minimize flow resistance not in the resting state, but at the dilated vessel diameter. These results raise the question of whether less organized circulatory systems, such as that found in newly formed solid tumors or in the developing embryo, may deviate from the optimal bump spacing predicted to minimize flow resistance.
机译:流经颠簸管的三维斯托克斯流的最新分析解决方案预测,对于给定的颠簸区域,存在最佳圆周波数,该圆周波数可使流阻最小化。这项研究使用微血管内皮细胞形态的测量来测试这种预测是否在微脉管系统中成立。使用共聚焦活体显微镜在麻醉小鼠的血液中灌注的原位微血管中测量内皮细胞(EC)形态。 EC边界通过免疫荧光标记EC表面分子ICAM-1来鉴定,该分子在表面但在EC边界区域中不表达。将该理论与使用活体显微镜对小鼠提睾肌中微血管EC几何结构进行大量原位测量的比较表明,EC核在直径为27至106μm的小静脉中的间距确实非常接近于此预测的最佳配置。有趣的是,小动脉EC的配置可最大程度地减小非静息状态下的流动阻力,而在于扩张血管直径时的流动阻力。这些结果提出了这样一个问题,即组织不健全的循环系统(例如在新形成的实体瘤中或在发育中的胚胎中发现的循环系​​统)是否可能偏离预测的最小碰撞间隔,从而使流动阻力最小化。

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