Samadi-Dooki Aref, Shodja Hossein M, Malekmotiei Leila
Department of Civil Engineering, Sharif University of Technology, P.O. Box 11155-9313, Tehran, Iran.
Soft Matter. 2015 May 14;11(18):3693-705. doi: 10.1039/c5sm00394f.
In this paper an analytical approach to study the effect of the substrate physical properties on the kinetics of adhesion and motility behavior of cells is presented. Cell adhesion is mediated by the binding of cell wall receptors and substrate's complementary ligands, and tight adhesion is accomplished by the recruitment of the cell wall binders to the adhesion zone. The binders' movement is modeled as their axisymmetric diffusion in the fluid-like cell membrane. In order to preserve the thermodynamic consistency, the energy balance for the cell-substrate interaction is imposed on the diffusion equation. Solving the axisymmetric diffusion-energy balance coupled equations, it turns out that the physical properties of the substrate (substrate's ligand spacing and stiffness) have considerable effects on the cell adhesion and motility kinetics. For a rigid substrate with uniform distribution of immobile ligands, the maximum ligand spacing which does not interrupt adhesion growth is found to be about 57 nm. It is also found that as a consequence of the reduction in the energy dissipation in the isolated adhesion system, cell adhesion is facilitated by increasing substrate's stiffness. Moreover, the directional movement of cells on a substrate with gradients in mechanical compliance is explored with an extension of the adhesion formulation. It is shown that cells tend to move from soft to stiff regions of the substrate, but their movement is decelerated as the stiffness of the substrate increases. These findings based on the proposed theoretical model are in excellent agreement with the previous experimental observations.
本文提出了一种分析方法,用于研究底物物理性质对细胞黏附动力学和运动行为的影响。细胞黏附是由细胞壁受体与底物互补配体的结合介导的,紧密黏附则通过将细胞壁黏附分子募集到黏附区域来实现。黏附分子的运动被建模为它们在类流体细胞膜中的轴对称扩散。为了保持热力学一致性,将细胞-底物相互作用的能量平衡施加到扩散方程上。求解轴对称扩散-能量平衡耦合方程后发现,底物的物理性质(底物的配体间距和刚度)对细胞黏附动力学和运动有相当大的影响。对于具有固定配体均匀分布的刚性底物,发现不中断黏附增长的最大配体间距约为57纳米。还发现,由于孤立黏附系统中能量耗散的减少,增加底物的刚度有利于细胞黏附。此外,通过扩展黏附公式,研究了细胞在具有机械顺应性梯度的底物上的定向运动。结果表明,细胞倾向于从底物的柔软区域向坚硬区域移动,但随着底物刚度的增加,它们的移动会减速。基于所提出理论模型的这些发现与先前的实验观察结果非常吻合。