Stress-shape misalignment in confluent cell layers.

Nat Commun

The Rudolf Peierls Centre for Theoretical Physics, Department of Physics, University of Oxford, Parks Road, Oxford, OX1 3PU, United Kingdom.

Published: April 2024

AI Article Synopsis

  • In tissue formation and repair, cells generate active forces that lead to complex motion patterns, but how these forces change over time is not fully understood.
  • Researchers measured the orientation of cell shapes and their generated stresses, finding that contractile stresses often misalign with the cell body despite an assumed relationship.
  • A new continuum model was developed to show that cells can control their contractile forces independently of their shape, indicating a more flexible relationship between cell forces and shape than previously believed.

Article Abstract

In tissue formation and repair, the epithelium undergoes complex patterns of motion driven by the active forces produced by each cell. Although the principles governing how the forces evolve in time are not yet clear, it is often assumed that the contractile stresses within the cell layer align with the axis defined by the body of each cell. Here, we simultaneously measured the orientations of the cell shape and the cell-generated contractile stresses, observing correlated, dynamic domains in which the stresses were systematically misaligned with the cell body. We developed a continuum model that decouples the orientations of contractile stress and cell body. The model recovered the spatial and temporal dynamics of the regions of misalignment in the experiments. These findings reveal that the cell controls its contractile forces independently from its shape, suggesting that the physical rules relating cell forces and cell shape are more flexible than previously thought.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC11059169PMC
http://dx.doi.org/10.1038/s41467-024-47702-wDOI Listing

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