In cancer metastasis and other physiological processes, cells migrate through the three-dimensional (3D) extracellular matrix of connective tissue and must overcome the steric hindrance posed by pores that are smaller than the cells. It is currently assumed that low cell stiffness promotes cell migration through confined spaces, but other factors such as adhesion and traction forces may be equally important. To study 3D migration under confinement in a stiff (1.77 MPa) environment, we use soft lithography to fabricate polydimethylsiloxane (PDMS) devices consisting of linear channel segments with 20 μm length, 3.7 μm height, and a decreasing width from 11.2 to 1.7 μm. To study 3D migration in a soft (550 Pa) environment, we use self-ass...
Cell migration is essential for a variety of biological processes, such as embryogenesis, wound heal...
Directional cell migration in dense three-dimensional (3D) environments critically depends upon shap...
The behavior of cancer cells is strongly influenced by the properties of extracellular microenvironm...
AbstractIn cancer metastasis and other physiological processes, cells migrate through the three-dime...
Migration of cells across tissues with diverse biophysical environments plays a crucial role in a wi...
International audienceAbstract Cancer cell migration is a widely studied topic but has been very oft...
Cancer cell migration is influenced by cellular phenotype and behavior as well as by the mechanical ...
Cell migration is essential for physiological processes as diverse as development, immune defence an...
Cell migration is a fundamental feature of the interaction of cells with their surrounding. The cell...
Cell migration through 3D tissue depends on a physicochemical balance between cell deformability and...
The mechanical properties of cells strongly regulate many physiological and pathological processes. ...
Cancer is a disease responsible for a large number of deaths in society. Specifically, cancer cell m...
International audienceCollective cell migration is fundamental throughout development, wound healing...
Cell migration plays a significant role in multicellular organisms, where it is involved in physiolo...
Cellular infiltration and colonization of three-dimensional (3D) porous scaffolds is influenced by m...
Cell migration is essential for a variety of biological processes, such as embryogenesis, wound heal...
Directional cell migration in dense three-dimensional (3D) environments critically depends upon shap...
The behavior of cancer cells is strongly influenced by the properties of extracellular microenvironm...
AbstractIn cancer metastasis and other physiological processes, cells migrate through the three-dime...
Migration of cells across tissues with diverse biophysical environments plays a crucial role in a wi...
International audienceAbstract Cancer cell migration is a widely studied topic but has been very oft...
Cancer cell migration is influenced by cellular phenotype and behavior as well as by the mechanical ...
Cell migration is essential for physiological processes as diverse as development, immune defence an...
Cell migration is a fundamental feature of the interaction of cells with their surrounding. The cell...
Cell migration through 3D tissue depends on a physicochemical balance between cell deformability and...
The mechanical properties of cells strongly regulate many physiological and pathological processes. ...
Cancer is a disease responsible for a large number of deaths in society. Specifically, cancer cell m...
International audienceCollective cell migration is fundamental throughout development, wound healing...
Cell migration plays a significant role in multicellular organisms, where it is involved in physiolo...
Cellular infiltration and colonization of three-dimensional (3D) porous scaffolds is influenced by m...
Cell migration is essential for a variety of biological processes, such as embryogenesis, wound heal...
Directional cell migration in dense three-dimensional (3D) environments critically depends upon shap...
The behavior of cancer cells is strongly influenced by the properties of extracellular microenvironm...