Boundaries steer the contraction of active gels


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Date

2016

Publication Type

Journal Article

ETH Bibliography

yes

Citations

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Data

Abstract

Cells set up contractile actin arrays to drive various shape changes and to exert forces to their environment. To understand their assembly process, we present here a reconstituted contractile system, comprising F-actin and myosin II filaments, where we can control the local activation of myosin by light. By stimulating different symmetries, we show that the force balancing at the boundaries determine the shape changes as well as the dynamics of the global contraction. Spatially anisotropic attachment of initially isotropic networks leads to a self-organization of highly aligned contractile fibres, being reminiscent of the order formation in muscles or stress fibres. The observed shape changes and dynamics are fully recovered by a minimal physical model.

Publication status

published

Editor

Book title

Volume

7

Pages / Article No.

13120

Publisher

Nature

Event

Edition / version

Methods

Software

Geographic location

Date collected

Date created

Subject

Organisational unit

03359 - Oettinger, Christian (emeritus) / Oettinger, Christian (emeritus) check_circle

Notes

Funding

156106 - Surface rheology of block-copolymer stabilized interfaces: a combined computational & experimental study (SNF)

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