Alignment interactions drive structural transitions in biological tissues.
basic_science · Level V
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- Record sourced from PubMed, PMID 34781522.
- Also identified by DOI 10.1103/PhysRevE.104.044606.
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Abstract
Experimental evidence shows that there is a feedback between cell shape and cell motion. How this feedback impacts the collective behavior of dense cell monolayers remains an open question. We investigate the effect of a feedback that tends to align the cell crawling direction with cell elongation in a biological tissue model. We find that the alignment interaction promotes nematic patterns in the fluid phase that eventually undergo a nonequilibrium phase transition into a quasihexagonal solid. Meanwhile, highly asymmetric cells do not undergo the liquid-to-solid transition for any value of the alignment coupling. In this regime, the dynamics of cell centers and shape fluctuation show features typical of glassy systems.
Medical subject headings
- Mass Gatherings
- Models, Biological