Authors
Yu Zheng, Hanqing Nan, Yanping Liu, Qihui Fan, Xiaochen Wang, Ruchuan Liu, Liyu Liu, Fangfu Ye, Bo Sun, Yang Jiao
Publication date
2019/10/11
Journal
Physical Review E
Volume
100
Issue
4
Pages
043303
Publisher
American Physical Society
Description
Cell migration in fibrous extracellular matrix (ECM) is crucial to many physiological and pathological processes such as tissue regeneration, immune response, and cancer progression. During migration, individual cells can generate active pulling forces via actomyosin contraction, which are transmitted to the ECM fibers through focal adhesion complexes, remodel the ECM, and eventually propagate to and can be sensed by other cells in the system. The microstructure and physical properties of the ECM can also significantly influence cell migration, e.g., via durotaxis and contact guidance. Here, we develop a computational model for two-dimensional cell migration regulated by cell-ECM micromechanical coupling. Our model explicitly takes into account a variety of cellular-level processes, including focal adhesion formation and disassembly, active traction force generation and cell locomotion due to actin filament …
Total citations
2020202120222023202410111574
Scholar articles