Cells’ local mechanical environment can be as important in guiding cellular responses as many well-characterized biochemical cues. Hydrogels that mimic the native extracellular matrix can provide these mechanical cues to encapsulated cells, allowing for the study of their impact on cellular behaviours. Moreover, by harnessing cellular responses to mechanical cues, hydrogels can be used to create tissues in vitro for regenerative medicine applications and for disease modelling. This Primer outlines the importance and challenges of creating hydrogels that mimic the mechanical and biological properties of the native extracellular matrix. The design of hydrogels for mechanobiology studies is discussed, including the appropriate choice of cross-...
International audienceCell-encapsulating hydrogels are of tremendous interest in regenerative medici...
Hydrogels can mimic several features of the cell native microenvironment and have been widely used a...
Hydrogels can mimic several features of the cell native microenvironment and have been widely used a...
Cells’ local mechanical environment can be as important in guiding cellular responses as many well-c...
Cells’ local mechanical environment can be as important in guiding cellular responses as many well-c...
Cells’ local mechanical environment can be as important in guiding cellular responses as many well-c...
The past decade has seen a decided move from static and passive biomaterials to biodegradable, dynam...
The past decade has seen a decided move from static and passive biomaterials to biodegradable, dynam...
The past decade has seen a decided move from static and passive biomaterials to biodegradable, dynam...
The past decade has seen a decided move from static and passive biomaterials to biodegradable, dynam...
The past decade has seen a decided move from static and passive biomaterials to biodegradable, dynam...
Ample evidence has demonstrated that biological cells not only react to biochemical cues from the su...
Mechanical cues induce a variety of downstream effects on cells, including the regulation of stem ce...
The extracellular matrix is a highly complex microenvironment, whose various components converge to ...
In the field of tissue engineering and regenerative medicine, hydrogels are used as biomaterials to ...
International audienceCell-encapsulating hydrogels are of tremendous interest in regenerative medici...
Hydrogels can mimic several features of the cell native microenvironment and have been widely used a...
Hydrogels can mimic several features of the cell native microenvironment and have been widely used a...
Cells’ local mechanical environment can be as important in guiding cellular responses as many well-c...
Cells’ local mechanical environment can be as important in guiding cellular responses as many well-c...
Cells’ local mechanical environment can be as important in guiding cellular responses as many well-c...
The past decade has seen a decided move from static and passive biomaterials to biodegradable, dynam...
The past decade has seen a decided move from static and passive biomaterials to biodegradable, dynam...
The past decade has seen a decided move from static and passive biomaterials to biodegradable, dynam...
The past decade has seen a decided move from static and passive biomaterials to biodegradable, dynam...
The past decade has seen a decided move from static and passive biomaterials to biodegradable, dynam...
Ample evidence has demonstrated that biological cells not only react to biochemical cues from the su...
Mechanical cues induce a variety of downstream effects on cells, including the regulation of stem ce...
The extracellular matrix is a highly complex microenvironment, whose various components converge to ...
In the field of tissue engineering and regenerative medicine, hydrogels are used as biomaterials to ...
International audienceCell-encapsulating hydrogels are of tremendous interest in regenerative medici...
Hydrogels can mimic several features of the cell native microenvironment and have been widely used a...
Hydrogels can mimic several features of the cell native microenvironment and have been widely used a...