Published November 29, 2023 | Version v1
Software Open

A multiscale theory for spreading and migration of adhesion-reinforced mesenchymal cells

  • 1. Virginia Tech

Description

We present a chemomechanical whole-cell theory for the spreading and migration dynamics of mesenchymal cells that can actively reinforce their adhesion to an underlying viscoelastic substrate as a function of its stiffness. Our multiscale model couples the adhesion reinforcement effect at the subcellular scale with the nonlinear mechanics of the nucleus-cytoskeletal network complex at the cellular scale to explain the concurrent monotonic area-stiffness and non-monotonic speed-stiffness relationships observed in experiments: We consider that large cell spreading on stiff substrates flattens the nucleus, increasing the viscous drag force on it. The resulting force balance dictates a reduction in the migration speed on stiff substrates. We also reproduce the experimental influence of the substrate viscosity on the cell spreading area and migration speed by elucidating how the viscosity may either maintain adhesion reinforcement or prevent it depending on the substrate stiffness. Additionally, our model captures the experimental directed migration behavior of the adhesion-reinforced cells along a stiffness gradient, known as durotaxis, as well as up or down a viscosity gradient (viscotaxis or anti-viscotaxis), the cell moving towards an optimal viscosity in either case. Overall, our theory explains the intertwined mechanics of the cell spreading, migration speed and direction in the presence of the molecular adhesion reinforcement mechanism. 

Files

Files (145.8 kB)

Name Size Download all
md5:63eafc523e9db2141125224e35d91128
6.7 kB Download
md5:8c37f67690eccd890605f2db1666704b
3.1 kB Download
md5:74e321b2e0ebeb7a27848733a33a1729
22.3 kB Download
md5:67b7628f49787bf1993d0dd2a83605a0
24.3 kB Download
md5:43f841f6633c789aa42583ff8fc6fc48
24.3 kB Download
md5:4cdb4dccacc7cb485bb996b63f0d307f
7.5 kB Download
md5:cd9586e286ef24f085672369c0a3d744
5.6 kB Download
md5:8017882e35ff1319af000cca1bf598ef
26.0 kB Download
md5:1c41538c94f7c983908f0160e6b6f86a
26.0 kB Download

Additional details

Related works

Is source of
10.5061/dryad.h9w0vt4qr (DOI)