Planar in vitro models have been invaluable tools to identify the mechanical basis of wound closure. Although these models may recapitulate closure dynamics of epithelial cell sheets, they fail to capture how a wounded fibrous tissue rebuilds its 3D architecture. Here we develop a 3D biomimetic model for soft tissue repair and demonstrate that fibroblasts ensconced in a collagen matrix rapidly close microsurgically induced defects within 24 h. Traction force microscopy and time-lapse imaging reveal that closure of gaps begins with contractility-mediated whole-tissue deformations. Subsequently, tangentially migrating fibroblasts along the wound edge tow and assemble a progressively thickening fibronectin template inside the gap that provide ...
The mechanical properties of the extracellular matrix (ECM)-a complex, 3D, fibrillar scaffold of cel...
The mechanical properties of the extracellular matrix (ECM)-a complex, 3D, fibrillar scaffold of cel...
A fundamental feature of multicellular organisms is their ability to self-repair wounds through the ...
Planar in vitro models have been invaluable tools to identify the mechanical basis of wound closure....
The mechanism by which stromal cells fill voids in injured tissue remains a fundamental question in ...
Wound contraction is an ancient survival mechanism of vertebrates that results from tensile forces s...
Engineered fibrous tissues consisting of cells encapsulated within collagen gels are widely used thr...
The geometry (size and shape) of gaps is a key determinant in controlling gap closure during wound h...
Many cell types remodel the extracellular matrix of the tissues they inhabit in response to a wide r...
Fibrosis and solid tumor progression are closely related, with both involving pathways associated wi...
AbstractDuring wound healing and angiogenesis, fibrin serves as a provisional extracellular matrix. ...
International audienceThe closure of gaps within epithelia is crucial to maintain its integrity duri...
Cell spatial remodelling in tensile connective tissue is at the base of fundamental biological proce...
Fibrosis and solid tumor progression are closely related, with both involving pathways associated wi...
Epithelia are physical barriers against pathogens. Therefore, the ability of multicellular organisms...
The mechanical properties of the extracellular matrix (ECM)-a complex, 3D, fibrillar scaffold of cel...
The mechanical properties of the extracellular matrix (ECM)-a complex, 3D, fibrillar scaffold of cel...
A fundamental feature of multicellular organisms is their ability to self-repair wounds through the ...
Planar in vitro models have been invaluable tools to identify the mechanical basis of wound closure....
The mechanism by which stromal cells fill voids in injured tissue remains a fundamental question in ...
Wound contraction is an ancient survival mechanism of vertebrates that results from tensile forces s...
Engineered fibrous tissues consisting of cells encapsulated within collagen gels are widely used thr...
The geometry (size and shape) of gaps is a key determinant in controlling gap closure during wound h...
Many cell types remodel the extracellular matrix of the tissues they inhabit in response to a wide r...
Fibrosis and solid tumor progression are closely related, with both involving pathways associated wi...
AbstractDuring wound healing and angiogenesis, fibrin serves as a provisional extracellular matrix. ...
International audienceThe closure of gaps within epithelia is crucial to maintain its integrity duri...
Cell spatial remodelling in tensile connective tissue is at the base of fundamental biological proce...
Fibrosis and solid tumor progression are closely related, with both involving pathways associated wi...
Epithelia are physical barriers against pathogens. Therefore, the ability of multicellular organisms...
The mechanical properties of the extracellular matrix (ECM)-a complex, 3D, fibrillar scaffold of cel...
The mechanical properties of the extracellular matrix (ECM)-a complex, 3D, fibrillar scaffold of cel...
A fundamental feature of multicellular organisms is their ability to self-repair wounds through the ...