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Leukocyte Rolling on P-Selectin: A Three-Dimensional Numerical Study of the Effect of Cytoplasmic Viscosity

机译:P选择素上的白细胞滚动:细胞质粘度影响的三维数值研究。

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摘要

Rolling leukocytes deform and show a large area of contact with endothelium under physiological flow conditions. We studied the effect of cytoplasmic viscosity on leukocyte rolling using our three-dimensional numerical algorithm that treats leukocyte as a compound droplet in which the core phase (nucleus) and the shell phase (cytoplasm) are viscoelastic fluids. The algorithm includes the mechanical properties of the cell cortex by cortical tension and considers leukocyte microvilli that deform viscoelastically and form viscous tethers at supercritical force. Stochastic binding kinetics describes binding of adhesion molecules. The leukocyte cytoplasmic viscosity plays a critical role in leukocyte rolling on an adhesive substrate. High-viscosity cells are characterized by high mean rolling velocities, increased temporal fluctuations in the instantaneous velocity, and a high probability for detachment from the substrate. A decrease in the rolling velocity, drag, and torque with the formation of a large, flat contact area in low-viscosity cells leads to a dramatic decrease in the bond force and stable rolling. Using values of viscosity consistent with step aspiration studies of human neutrophils (5–30 Pa·s), our computational model predicts the velocities and shape changes of rolling leukocytes as observed in vitro and in vivo.
机译:在生理流动条件下,滚动白细胞变形并显示与内皮的大面积接触。我们使用三维数值算法研究了细胞质粘度对白细胞滚动的影响,该算法将白细胞视为复合液滴,其中核心相(核)和壳相(胞质)是粘弹性流体。该算法包括通过皮层张力作用的细胞皮层的机械特性,并考虑了粘弹性变形并在超临界力下形成粘性束缚的白细胞微绒毛。随机结合动力学描述了粘附分子的结合。白细胞的细胞质粘度在白细胞在粘性基质上滚动中起关键作用。高粘度电池的特点是平均滚动速度高,瞬时速度的瞬时波动增加以及从基材上脱落的可能性高。在低粘度孔中形成大而平坦的接触面积时,轧制速度,阻力和扭矩的降低导致粘结力的显着降低和稳定的轧制。我们的计算模型使用与人类嗜中性粒细胞逐步抽吸研究(5-30 Pa·s)一致的粘度值,预测了在体外和体内观察到的滚动白细胞的速度和形状变化。

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