In vivo, cells are frequently exposed to multiple mechanical stimuli arising from the extracellular microenvironment, with a deep impact on many biological functions. On the other hand, current methods for mechanobiology do not allow one to easily replicate in vitro the complex spatio-temporal profile of such mechanical signals. Here we introduce a new platform for studying the mechanical coupling between single cells and a dynamic extracellular environment, based on active substrates for cell culture made of Fe-coated polymeric micropillars. Under the action of quasi-static external magnetic fields, each group of pillars produces synchronous mechanical stimuli at different points of the cell membrane, thanks to the highly controllable pill...
Mechanical signals offer a promising way to control cell and tissue development. It has been establi...
Mechanical signals offer a promising way to control cell and tissue development. It has been establi...
We report a technique for generating controllable, time-varying and localizable forces on arrays of ...
In vivo, cells are frequently exposed to multiple mechanical stimuli arising from the extracellular ...
In vivo, cells are frequently exposed to multiple mechanical stimuli arising from the extracellular ...
In vivo, cells are frequently exposed to multiple mechanical stimuli arising from the extracellular ...
In vivo, cells are frequently exposed to multiple mechanical stimuli arising from the extracellular ...
Cells are able to sense and react to their physical environment by translating a mechanical cue into...
Biophysical and biochemical signals of material surfaces potently regulate cell functions and fate. ...
Mechanical signals affect virtually every fundamental single- and multi-cellular process in biology....
Mechanical signals affect virtually every fundamental single- and multi-cellular process in biology....
Cells in their native environment are bombarded by mechanical signals ranging from strains within a ...
Biophysical and biochemical signals of material surfaces potently regulate cell functions and fate. ...
Biophysical and biochemical signals of material surfaces potently regulate cell functions and fate. ...
Thesis (Ph.D.)--Harvard--Massachusetts Institute of Technology Division of Health Sciences and Techn...
Mechanical signals offer a promising way to control cell and tissue development. It has been establi...
Mechanical signals offer a promising way to control cell and tissue development. It has been establi...
We report a technique for generating controllable, time-varying and localizable forces on arrays of ...
In vivo, cells are frequently exposed to multiple mechanical stimuli arising from the extracellular ...
In vivo, cells are frequently exposed to multiple mechanical stimuli arising from the extracellular ...
In vivo, cells are frequently exposed to multiple mechanical stimuli arising from the extracellular ...
In vivo, cells are frequently exposed to multiple mechanical stimuli arising from the extracellular ...
Cells are able to sense and react to their physical environment by translating a mechanical cue into...
Biophysical and biochemical signals of material surfaces potently regulate cell functions and fate. ...
Mechanical signals affect virtually every fundamental single- and multi-cellular process in biology....
Mechanical signals affect virtually every fundamental single- and multi-cellular process in biology....
Cells in their native environment are bombarded by mechanical signals ranging from strains within a ...
Biophysical and biochemical signals of material surfaces potently regulate cell functions and fate. ...
Biophysical and biochemical signals of material surfaces potently regulate cell functions and fate. ...
Thesis (Ph.D.)--Harvard--Massachusetts Institute of Technology Division of Health Sciences and Techn...
Mechanical signals offer a promising way to control cell and tissue development. It has been establi...
Mechanical signals offer a promising way to control cell and tissue development. It has been establi...
We report a technique for generating controllable, time-varying and localizable forces on arrays of ...