English

Cytoskeletal Anisotropy Controls Geometry and Forces of Adherent Cells

Biological Physics 2018-11-02 v2 Soft Condensed Matter Cell Behavior

Abstract

We investigate the geometrical and mechanical properties of adherent cells characterized by a highly anisotropic actin cytoskeleton. Using a combination of theoretical work and experiments on micropillar arrays, we demonstrate that the shape of the cell edge is accurately described by elliptical arcs, whose eccentricity expresses the degree of anisotropy of the internal cell stresses. This results in a spatially varying tension along the cell edge, that significantly affects the traction forces exerted by the cell on the substrate. Our work highlights the strong interplay between cell mechanics and geometry and paves the way towards the reconstruction of cellular forces from geometrical data.

Keywords

Cite

@article{arxiv.1702.03916,
  title  = {Cytoskeletal Anisotropy Controls Geometry and Forces of Adherent Cells},
  author = {Wim Pomp and Koen Schakenraad and Hayri E. Balcioğlu and Hedde van Hoorn and Erik H. J. Danen and Roeland M. H. Merks and Thomas Schmidt and Luca Giomi},
  journal= {arXiv preprint arXiv:1702.03916},
  year   = {2018}
}

Comments

5 pages, 3 figures