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Red blood cells augment leukocyte rolling in a virtual blood vessel.

机译:红细胞会增加虚拟血管中的白细胞滚动。

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摘要

Leukocyte rolling and arrest on the vascular endothelium is a central event in normal and pathological immune responses. However, rigorous estimation of the fluid and surface forces involved in leukocyte-endothelial interactions has been difficult due to the particulate, non-Newtonian nature of blood. Here we present a Lattice-Boltzmann approach to quantify forces exerted on rolling leukocytes by red blood cells in a "virtual blood vessel." We report that the normal force imparted by erythrocytes is sufficient to increase leukocyte binding and that increases in tangential force and torque can promote rolling of previously adherent leukocytes. By simulating changes in hematocrit we show that a close "envelopment" of the leukocyte by the red blood cells is necessary to produce significant changes in the forces. This novel approach can be applied to a large number of biological and industrial problems involving the complex flow of particulate suspensions.
机译:白细胞在血管内皮上滚动和停滞是正常和病理性免疫反应中的中心事件。然而,由于血液的颗粒性,非牛顿性,很难对白细胞-内皮相互作用中涉及的流体和表面力进行精确估计。在这里,我们提出一种莱迪思-玻耳兹曼方法来量化“虚拟血管”中红细胞施加在滚动白细胞上的力。我们报告说,由红细胞施加的法向力足以增加白细胞的结合,并且切向力和扭矩的增加可以促进先前粘附的白细胞的滚动。通过模拟血细胞比容的变化,我们表明红细胞对白细胞的紧密“包封”对于产生力的显着变化是必要的。这种新颖的方法可以应用于涉及颗粒悬浮液复杂流动的大量生物学和工业问题。

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