Mechanical stress induced by the polymerisation of an active gel near a surface

Fuente: arXiv
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Main Authors: Mihali, Kristiana, Wörthmüller, Dennis, Sens, Pierre
Format: Preprint
Published: 2026
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author Mihali, Kristiana
Wörthmüller, Dennis
Sens, Pierre
author_facet Mihali, Kristiana
Wörthmüller, Dennis
Sens, Pierre
contents Actin flow in the cortical cytoskeleton underneath the cell membrane generates mechanical stresses that shape the cell surface. We study this mechanism using a hydrodynamic model of a compressible active gel polymerizing at the membrane and undergoing turnover. We determine how actin flow, density relaxation and friction of actin with the membrane generate stress on a corrugated membrane at the linear order in deformation. Analytical solutions in limiting regimes, combined with finite element methods in the general case, provide a map of normal and tangential stresses as functions of compressibility, interfacial friction and actin turnover, and determine the conditions under which actin polymerization can render the membrane linearly unstable. The non-linear regime is also briefly discussed.
format Preprint
id arxiv_https___arxiv_org_abs_2603_21919
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle Mechanical stress induced by the polymerisation of an active gel near a surface
Mihali, Kristiana
Wörthmüller, Dennis
Sens, Pierre
Soft Condensed Matter
Subcellular Processes
Actin flow in the cortical cytoskeleton underneath the cell membrane generates mechanical stresses that shape the cell surface. We study this mechanism using a hydrodynamic model of a compressible active gel polymerizing at the membrane and undergoing turnover. We determine how actin flow, density relaxation and friction of actin with the membrane generate stress on a corrugated membrane at the linear order in deformation. Analytical solutions in limiting regimes, combined with finite element methods in the general case, provide a map of normal and tangential stresses as functions of compressibility, interfacial friction and actin turnover, and determine the conditions under which actin polymerization can render the membrane linearly unstable. The non-linear regime is also briefly discussed.
title Mechanical stress induced by the polymerisation of an active gel near a surface
topic Soft Condensed Matter
Subcellular Processes
url https://arxiv.org/abs/2603.21919