Issue 6, 2025

Mechanical feedback links cell division and dynamics in growing cell collectives

Abstract

Local stresses in a tissue, a collective property, regulate cell division and apoptosis. In turn, cell growth and division induce active stresses in the tissue. As a consequence, there is a feedback between cell growth and local stresses. However, how the cell dynamics depend on local stress-dependent cell division and the feedback strength is not understood. Here, we probe the consequences of stress-mediated growth and cell division on cell dynamics using agent-based simulations of a two-dimensional growing tissue. We discover a rich dynamical behavior of individual cells, ranging from jamming (mean square displacement, Δ(t) ∼ tα with α less than unity), to hyperdiffusion (α > 2) depending on cell division rate and the strength of the mechanical feedback. Strikingly, Δ(t) is determined by the tissue growth law, which quantifies cell proliferation, measuring the number of cells N(t) as a function of time. The growth law (N(t) ∼ tλ at long times) is regulated by the critical pressure that controls the strength of the mechanical feedback and the ratio between cell division-apoptosis rates. We show that λα, which implies that higher growth rate leads to a greater degree of cell migration. The variations in cell motility are linked to the emergence of highly persistent forces extending over several cell cycle times. Our predictions are testable using cell-tracking imaging techniques.

Graphical abstract: Mechanical feedback links cell division and dynamics in growing cell collectives

Article information

Article type
Paper
Submitted
19 Oct 2024
Accepted
27 Dec 2024
First published
10 Jan 2025

Soft Matter, 2025,21, 1170-1179

Mechanical feedback links cell division and dynamics in growing cell collectives

S. Sinha, X. Li, A. N. Malmi-Kakkada and D. Thirumalai, Soft Matter, 2025, 21, 1170 DOI: 10.1039/D4SM01230E

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