International audienceSmooth muscle cells (SMCs) are mural cells that play a vital contractile function in many tissues. Abnormalities in SMC organization are associated with many diseases including atherosclerosis, asthma, and uterine fibroids. Various studies have reported that SMCs cultured on flat surfaces can spontaneously form three-dimensional clusters whose organization resembles that encountered in some of these pathological settings. Remarkably, how these structures form remains unknown. Here we combine in vitro experiments and physical modeling to show that three-dimensional clusters initiate when cellular contractile forces induce a hole in a flat SMC sheet, a process that can be modeled as the brittle fracture of a viscoelastic...
In cells, many vital processes involve myosin-driven motility that actively remodels the actin cytos...
The mechanical properties of the extracellular matrix (ECM)–a complex, 3D, fibrillar scaffold of cel...
International audienceRecent experiments hint that adherent cells are sensitive to their substrate c...
International audienceSmooth muscle cells (SMCs) are mural cells that play a vital contractile funct...
International audienceIn this paper we report a fundamental morphological instability of constrained...
Spatial patterns of cellular growth generate mechanical stresses that help to push, fold, expand, an...
Epithelial cell clusters often move collectively on a substrate. Mechanical signals play a major rol...
During animal development and homeostasis, the structure of tissues, including muscles, blood vessel...
Movement within eukaryotic cells largely originates from localized forces exerted by myosin motors o...
Actin filament networks play an active role in cytokinesis of eukaryotic cells. These networks, link...
International audienceThe mechanical microenvironment of cells has been associated with phenotypic c...
In recent years, cell based bio-actuators like cardiomyocytes and skeletal muscle cells have emerged...
The self-organization of cells into complex tissues during growth and regeneration is a combination ...
International audienceRecent experiments hint that adherent cells are sensitive to their substrate c...
Abstract Tissues acquire their function and shape via differentiation and morphogenesis. Both proces...
In cells, many vital processes involve myosin-driven motility that actively remodels the actin cytos...
The mechanical properties of the extracellular matrix (ECM)–a complex, 3D, fibrillar scaffold of cel...
International audienceRecent experiments hint that adherent cells are sensitive to their substrate c...
International audienceSmooth muscle cells (SMCs) are mural cells that play a vital contractile funct...
International audienceIn this paper we report a fundamental morphological instability of constrained...
Spatial patterns of cellular growth generate mechanical stresses that help to push, fold, expand, an...
Epithelial cell clusters often move collectively on a substrate. Mechanical signals play a major rol...
During animal development and homeostasis, the structure of tissues, including muscles, blood vessel...
Movement within eukaryotic cells largely originates from localized forces exerted by myosin motors o...
Actin filament networks play an active role in cytokinesis of eukaryotic cells. These networks, link...
International audienceThe mechanical microenvironment of cells has been associated with phenotypic c...
In recent years, cell based bio-actuators like cardiomyocytes and skeletal muscle cells have emerged...
The self-organization of cells into complex tissues during growth and regeneration is a combination ...
International audienceRecent experiments hint that adherent cells are sensitive to their substrate c...
Abstract Tissues acquire their function and shape via differentiation and morphogenesis. Both proces...
In cells, many vital processes involve myosin-driven motility that actively remodels the actin cytos...
The mechanical properties of the extracellular matrix (ECM)–a complex, 3D, fibrillar scaffold of cel...
International audienceRecent experiments hint that adherent cells are sensitive to their substrate c...