English

The nonlinear motion of cells subject to external forces

Soft Condensed Matter 2022-11-24 v2 Cell Behavior

Abstract

To develop a minimal model for a cell moving in a crowded environment such as in tissue, we investigate the response of a liquid drop of active matter moving on a flat rigid substrate to forces applied at its boundaries. We consider two different self-propulsion mechanisms, active stresses and treadmilling polymerisation, and we investigate how the active drop motion is altered by these surface forces. We find a highly non-linear response to forces that we characterise using drop velocity, drop shape, and the traction between the drop and the substrate. Each self-propulsion mechanism gives rise to two main modes of motion: a long thin drop with zero traction in the bulk, mostly occurring under strong stretching forces, and a parabolic drop with finite traction in the bulk, mostly occurring under strong squeezing forces. In each case there is a sharp transition between parabolic, and long thin drops as a function of the applied forces and indications of drop break-up where large forces stretch the drop.

Keywords

Cite

@article{arxiv.2107.14556,
  title  = {The nonlinear motion of cells subject to external forces},
  author = {Aondoyima Ioratim-Uba and Aurore Loisy and Silke Henkes and Tanniemola B. Liverpool},
  journal= {arXiv preprint arXiv:2107.14556},
  year   = {2022}
}

Comments

9 pages, 6 figures