ABSTRACT: We present a novel technique to examine cell−cell interactions and directed cell migration using micropatterned substrates of three distinct regions: an adhesive region, a nonadhesive region, and a dynamically adhesive region switched by addition of a soluble factor to the medium. Combining microcontact printing with avidin−biotin capture chemistry, we pattern nonadhesive regions of avidin that become adhesive through the capture of biotinylated fibronectin. Our strategy overcomes several limitations of current two-color dynamically adhesive substrates by incorporating a third, permanently nonadhesive region. Having three spatially and functionally distinct regions allows for the realization of more complex configurations of cellu...
Cell-extracellular matrix (ECM) adhesion mediated by integrins is a highly regulated process involve...
<div><p>Collective cell migration is involved in many biological and pathological processes. Various...
International audienceCollective cell migration is fundamental throughout development, wound healing...
We present a novel technique to examine cell–cell interactions and directed cell migration using mic...
Cells respond to adhesive and soluble cues in the extracellular matrix by modulating their behaviour...
Cell adhesion and migration play a fundamental role during development and maintenance of multicellu...
While it is well known that individual integrins are critical mediators of cell behavior, recent wor...
A simple material platform for advanced cell migration studies is presented. It relies on surfaces m...
Active migration in both healthy and malignant cells requires the integration of information derived...
In complex organisms, cells are often dependent on their extracellular matrix (ECM) for structural i...
Collective cell migration is involved in many biological and pathological processes. Various factors...
<p>(A) (a) Surfaces compatible with cell imaging were prepared by evaporating titanium (3 nm) and th...
Cell-substrate interactions play a crucial role in the design of better biomaterials and integration...
Cell adhesion, spreading and migration require the dynamic formation and dispersal of contacts with ...
<div><p>An integrative cell migration model incorporating focal adhesion (FA) dynamics, cytoskeleton...
Cell-extracellular matrix (ECM) adhesion mediated by integrins is a highly regulated process involve...
<div><p>Collective cell migration is involved in many biological and pathological processes. Various...
International audienceCollective cell migration is fundamental throughout development, wound healing...
We present a novel technique to examine cell–cell interactions and directed cell migration using mic...
Cells respond to adhesive and soluble cues in the extracellular matrix by modulating their behaviour...
Cell adhesion and migration play a fundamental role during development and maintenance of multicellu...
While it is well known that individual integrins are critical mediators of cell behavior, recent wor...
A simple material platform for advanced cell migration studies is presented. It relies on surfaces m...
Active migration in both healthy and malignant cells requires the integration of information derived...
In complex organisms, cells are often dependent on their extracellular matrix (ECM) for structural i...
Collective cell migration is involved in many biological and pathological processes. Various factors...
<p>(A) (a) Surfaces compatible with cell imaging were prepared by evaporating titanium (3 nm) and th...
Cell-substrate interactions play a crucial role in the design of better biomaterials and integration...
Cell adhesion, spreading and migration require the dynamic formation and dispersal of contacts with ...
<div><p>An integrative cell migration model incorporating focal adhesion (FA) dynamics, cytoskeleton...
Cell-extracellular matrix (ECM) adhesion mediated by integrins is a highly regulated process involve...
<div><p>Collective cell migration is involved in many biological and pathological processes. Various...
International audienceCollective cell migration is fundamental throughout development, wound healing...