首页> 外文期刊>Journal of the Mechanics and Physics of Solids >A Computational Modeling For Micropipette-manipulated Cell Detachment From A Substrate Mediated By Receptor-ligand Binding
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A Computational Modeling For Micropipette-manipulated Cell Detachment From A Substrate Mediated By Receptor-ligand Binding

机译:微移液管细胞从受体-配体结合介导的细胞分离的计算模型。

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We perform computer simulations of using a micropipette to attach and then detach a red blood cell on a flat substrate mediated by receptor-ligand binding. The cell is initially swollen with osmotic pressure, coated with a specific kind of bio-molecular receptor, sucked into the micropipette and then allowed to approach a substrate coated with the corresponding ligand. Binding interactions between the membrane-bound receptors and the substrate-anchored ligands cause the cell to spread onto the substrate surface. While the specific interaction between a pair of receptor and ligand is described by a chemical reaction equation, a traction-separation law is adopted to describe the non-specific interactions between the receptors and the substrate. A surface diffusion model is introduced to describe the mobility of the receptors within the cell membrane. After the equilibrium state of adhesion is achieved, a pulling force is applied on the micropipette to detach the cell from the substrate. The governing equations of cell-substrate interactions and receptor diffusion are implemented in a finite element scheme to simulate the entire process of cell suction, cell spreading, receptor diffusion, and cell detachment, and to investigate the effects of membrane stiffness, cohesive parameters, micropipette size, and suction pressure on the unbinding kinetics of the cell. The simulation results are shown to agree qualitatively with existing experimental data.
机译:我们进行计算机模拟,使用微量移液器将红细胞附着并分离到受体-配体结合介导的平坦底物上。首先使细胞在渗透压下溶胀,用一种特定类型的生物分子受体包被,然后将其吸到微量移液器中,然后使其接近涂有相应配体的底物。膜结合受体与底物锚定的配体之间的结合相互作用导致细胞扩散到底物表面上。虽然通过化学反应方程式描述了一对受体与配体之间的特异性相互作用,但采用牵引分离定律来描述受体与底物之间的非特异性相互作用。引入表面扩散模型来描述受体在细胞膜内的迁移率。在达到粘附的平衡状态后,将拉力施加到微量移液器上,以使细胞与基质分离。细胞-基质相互作用和受体扩散的控制方程以有限元方案实现,以模拟细胞抽吸,细胞扩散,受体扩散和细胞分离的全过程,并研究膜刚度,内聚参数,微量移液器的影响尺寸和吸气压力对细胞的释放动力学的影响。结果表明,仿真结果与现有实验数据在质量上吻合。

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