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Anne Bernheim-Groswasser
Anne Bernheim-Groswasser
Prof. ANNE BERNHEIM Department of Chemical Engineering, Ben-Gurion University of the Negev

Anne Bernheim

Senior Academic

Spontaneous buckling of contractile poroelastic actomyosin sheets

Y. Ideses, V. Erukhimovitch, R. Brand, D. Jourdain, J. Salmeron Hernandez, U. R. Gabinet, S. A. Safran, K. Kruse, A. Bernheim-Groswasser

Shape transitions in developing organisms can be driven by active stresses, notably, active contractility generated by myosin motors. The mechanisms generating tissue folding are typically studied in epithelia. There, the interaction between cells is also coupled to an elastic substrate, presenting a major difficulty for studying contraction induced folding. Here we study the contraction and buckling of active, initially homogeneous, thin elastic actomyosin networks isolated from bounding surfaces. The network behaves as a poroelastic material, where a flow of fluid is generated during contraction. Contraction starts at the system boundaries, proceeds into the bulk, and eventually leads to spontaneous buckling of the sheet at the periphery. The buckling instability resulted from system self-organization and from the spontaneous emergence of density gradients driven by the active contractility. The buckling wavelength increases linearly with sheet thickness. Our system offers a well-controlled way to study mechanically induced, spontaneous shape transitions in active matter.

Publication language English
Volume 9
Issue number 1
Publication status Published - 01.12.2018

ASJC Scopus subject areas

General Chemistry
General Biochemistry, Genetics and Molecular Biology
General Physics and Astronomy
Access to Document
10.1038/s41467-018-04829-x
Other files and links
Link to publication in Scopus