Distinct regimes of elastic response and deformation modes of cross-linked cytoskeletal and semiflexible polymer networks
- 18 December 2003
- journal article
- research article
- Published by American Physical Society (APS) in Physical Review E
- Vol. 68 (6) , 061907
- https://doi.org/10.1103/physreve.68.061907
Abstract
Semiflexible polymers such as filamentous actin (F-actin) play a vital role in the mechanical behavior of cells, yet the basic properties of cross-linked F-actin networks remain poorly understood. To address this issue, we have performed numerical studies of the linear response of homogeneous and isotropic two-dimensional networks subject to an applied strain at zero temperature. The elastic moduli are found to vanish for network densities at a rigidity percolation threshold. For higher densities, two regimes are observed: one in which the deformation is predominately affine and the filaments stretch and compress; and a second in which bending modes dominate. We identify a dimensionless scalar quantity, being a combination of the material length scales, that specifies to which regime a given network belongs. A scaling argument is presented that approximately agrees with this crossover variable. By a direct geometric measure, we also confirm that the degree of affinity under strain correlates with the distinct elastic regimes. We discuss the implications of our findings and suggest possible directions for future investigations.Keywords
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This publication has 54 references indexed in Scilit:
- Actin stress fibres and cell–cell adhesion molecules in tendons: organisation in vivo and response to mechanical loading of tendon cells in vitroMatrix Biology, 2002
- First-order transition between adhesion states in a system mimicking cell-tissue interactionEurophysics Letters, 2001
- Actin gelsCurrent Opinion in Solid State and Materials Science, 1997
- The Machinery of Cell CrawlingScientific American, 1994
- Mechanotransduction Across the Cell Surface and Through the CytoskeletonScience, 1993
- On the Crawling of Animal CellsScience, 1993
- Mechanical properties of cytoskeletal polymersCurrent Opinion in Cell Biology, 1991
- Resemblance of actin-binding protein/actin gels to covalently crosslinked networksNature, 1990
- Cellular Mechanics as an Indicator of Cytoskeletal Structure and FunctionAnnual Review of Biophysics, 1988
- Adhesion of cells to surfaces coated with polylysine. Applications to electron microscopy.The Journal of cell biology, 1975