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Simulation of circulating tumor cell transport and adhesion in cell suspensions in microfluidic devices

机译:微流体装置中细胞悬浮液中循环肿瘤细胞输送和粘附的模拟

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摘要

Understanding cell transport and adhesion dynamics under flow is important for many biotransport problems. We investigated the influence of cell size, ligand coating density, micropost size, and intercellular collisions on circulating tumor cell adhesion and transport in microfluidic devices. The cells were modeled as coarse-grained cell membranes and the adhesion was modeled as pairwise interacting potentials, while the fluid was solved using the lattice Boltzmann method. The coupling between the cell and the fluid was achieved through the immersed boundary method. The cell showed transient rolling adhesion in high shear regions and firm adhesion in low shear regions. The adhesive force for rolling cells on a micropost was increasing before the cell reached the crest of the post and then decreasing afterward. The adhesive strength for cells increases with ligand coating density. Cell trajectories in a microfluidic device with a shifted post design were studied as well. At low concentrations, the majority of the cells follow streamlines closely. However, the intercellular collision and collision from red blood cells impacted the cell trajectories. An L2 norm of |e| was defined to characterize the difference between the cell trajectories and the associated streamlines. It was shown that |e|L2 increases with micropost sizes and cell concentrations.
机译:了解流量的细胞传输和粘附动态对于许多生物传播问题是重要的。我们研究了细胞尺寸,配体涂层密度,微观尺寸和细胞间碰撞对微流体装置中循环肿瘤细胞粘附和转运的影响。将细胞被建模为粗粒细胞膜,并且粘附被建模为成对相互作用电位,同时使用晶格Boltzmann方法解决流体。通过浸没的边界法实现电池和流体之间的偶联。该电池在高剪切区域显示出瞬时滚动粘附,并且在低剪切区域中的坚固粘附。在细胞到达柱的嵴之前,在微孔上滚动电池的粘合力越来越大,然后之后降低。用于细胞的粘合强度随着配体涂层密度增加。研究了带有移位后设计的微流体装置中的细胞轨迹。在低浓度下,大多数细胞紧随其精简。然而,来自红细胞的细胞间碰撞和碰撞影响了细胞轨迹。 L2规范| e |被定义为表征小区轨迹和相关的流线之间的差异。结果表明,通过微尺寸和细胞浓度增加。

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