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[活性-非活性细胞界面的动态模型]

[The Dynamic Model of the Active-Inactive Cell Interface].

作者信息

Zhang Deqing, Zhang Haoshun, Li Bo

机构信息

( 100084) Institute of Biomechanics and Medical Engineering, Department of Engineering Mechanics, Tsinghua University, Beijing 100084, China.

出版信息

Sichuan Da Xue Xue Bao Yi Xue Ban. 2024 Jan 20;55(1):39-46. doi: 10.12182/20240160508.

Abstract

OBJECTIVE

To explore the morphodynamics of the active-inactive cell monolayer interfaces by using the active liquid crystal model.

METHODS

A continuum mechanical model was established based on the active liquid crystal theory and the active-inactive cell monolayer interfaces were established by setting the activity difference of cell monolayers. The theoretical equations were solved numerically by the finite difference and the lattice Boltzmann method.

RESULTS

The active-inactive cell interfaces displayed three typical morphologies, namely, flat interface, wavy interface, and finger-like interface. On the flat interfaces, the cells were oriented perpendicular to the interface, the -1/2 topological defects were clustered in the interfaces, and the interfaces were negatively charged. On the wavy interfaces, cells showed no obvious preference for orientation at the interfaces and the interfaces were neutrally charged. On the finger-like interfaces, cells were tangentially oriented at the interfaces, the +1/2 topological defects were collected at the interfaces, driving the growth of the finger-like structures, and the interfaces were positively charged.

CONCLUSION

The orientation of the cell alignment at the interface can significantly affect the morphologies of the active-inactive cell monolayer interfaces, which is closely associated with the dynamics of topological defects at the interfaces.

摘要

目的

利用活性液晶模型探索活性-非活性细胞单层界面的形态动力学。

方法

基于活性液晶理论建立连续介质力学模型,并通过设定细胞单层的活性差异来建立活性-非活性细胞单层界面。采用有限差分法和格子玻尔兹曼方法对理论方程进行数值求解。

结果

活性-非活性细胞界面呈现出三种典型形态,即平坦界面、波浪状界面和指状界面。在平坦界面上,细胞垂直于界面定向,-1/2拓扑缺陷聚集在界面处,且界面带负电。在波浪状界面上,细胞在界面处没有明显的定向偏好,且界面呈中性电荷。在指状界面上,细胞在界面处切向定向,+1/2拓扑缺陷聚集在界面处,驱动指状结构生长,且界面带正电。

结论

界面处细胞排列的定向可显著影响活性-非活性细胞单层界面的形态,这与界面处拓扑缺陷的动力学密切相关。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c762/10839493/10382bd7c9d5/scdxxbyxb-55-1-39-1.jpg

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