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Updated: Jan 22, 2026

Investigating Stress-relaxation and Failure Responses in the Trachea
Published on: October 18, 2022
Origin of Slow Stress Relaxation in the Cytoskeleton
Yuval Mulla1, F C MacKintosh2,3,4, Gijsje H Koenderink1
1Living Matter Department, AMOLF, Science Park 104, 1098 XG Amsterdam, The Netherlands.
Abstract:
Dynamically cross-linked semiflexible biopolymers such as the actin cytoskeleton govern the mechanical behavior of living cells. Semiflexible biopolymers nonlinearly stiffen in response to mechanical loads, whereas the cross-linker dynamics allow for stress relaxation over time. Here we show, through rheology and theoretical modeling, that the combined nonlinearity in time and stress leads to an unexpectedly slow stress relaxation, similar to the dynamics of disordered systems close to the glass transition. Our work suggests that transient cross-linking combined with internal stress can explain prior reports of soft glassy rheology of cells, in which the shear modulus increases weakly with frequency.
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