Active instability and nonlinear dynamics of cell-cell junctions
Soft Condensed Matter
2021-11-17 v4
Abstract
Active cell-junction remodeling is important for tissue morphogenesis, yet its underlying physics is not understood. We study a mechanical model that describes junctions as dynamic active force dipoles. Their instability can trigger cell intercalations by a critical collapse. Nonlinearities in tissue's elastic response can stabilize the collapse either by a limit cycle or condensation of junction lengths at cusps of the energy landscape. Furthermore, active junction networks undergo collective instability to drive active in-plane ordering or develop a limit cycle of collective oscillations, which extends over regions of the energy landscape corresponding to distinct network topologies.
Keywords
Cite
@article{arxiv.2101.07058,
title = {Active instability and nonlinear dynamics of cell-cell junctions},
author = {Matej Krajnc and Tomer Stern and Clement Zankoc},
journal= {arXiv preprint arXiv:2101.07058},
year = {2021}
}