One of the promises of synthetic materials in cell culturing is that control over their molecular structures may ultimately be used to control their biological processes. Synthetic polymer hydrogels from polyisocyanides (PIC) are a new class of minimal synthetic biomaterials for three-dimensional cell culturing. The macromolecular lengths and densities of biofunctional groups that decorate the polymer can be readily manipulated while preserving the intrinsic nonlinear mechanics, a feature commonly displayed by fibrous biological networks. In this work, we propose the use of PIC gels as cell culture platforms with decoupled mechanical inputs and biological cues. For this purpose, different types of cells were encapsulated in PIC gels of tail...
Mechanical responsiveness is essential to all biological systems down to the level of tissues and ce...
Engineering synthetic hydrogels on a molecular basis to introduce natural features that are importan...
Natural extracellular matrices (ECMs) are viscoelastic and exhibit stress relaxation. However, hydro...
One of the promises of synthetic materials in cell culturing is that control over their molecular st...
One of the promises of synthetic materials in cell culturing is that control over their molecular st...
Strain stiffening of extracellular matrices is increasingly recognized as a mechanical mechanism to ...
Synthetic hydrogels from polyisocyanides (PIC) are a type of novel thermoreversible biomaterials, wh...
Artificial 3-dimensional (3D) cell culture systems, which mimic the extracellular matrix (ECM), hold...
Molecular and mechanical interactions with the 3D extracellular matrix are essential for cell functi...
Historically, cell behavior has been investigated by removing cells from their native environment an...
<p>Artificial 3-dimensional (3D) cell culture systems, which mimic the extracellular matrix (ECM), h...
Molecular and mechanical interactions with the 3D extracellular matrix are essential for cell functi...
Artificial 3-dimensional (3D) cell culture systems, which mimic the extracellular matrix (ECM), hold...
Over the past decade, methods to culture stem cells in three dimensions have opened up a plethora of...
Cellular phenotype is heavily influenced by the extracellular matrix (ECM), a complex and tissue-spe...
Mechanical responsiveness is essential to all biological systems down to the level of tissues and ce...
Engineering synthetic hydrogels on a molecular basis to introduce natural features that are importan...
Natural extracellular matrices (ECMs) are viscoelastic and exhibit stress relaxation. However, hydro...
One of the promises of synthetic materials in cell culturing is that control over their molecular st...
One of the promises of synthetic materials in cell culturing is that control over their molecular st...
Strain stiffening of extracellular matrices is increasingly recognized as a mechanical mechanism to ...
Synthetic hydrogels from polyisocyanides (PIC) are a type of novel thermoreversible biomaterials, wh...
Artificial 3-dimensional (3D) cell culture systems, which mimic the extracellular matrix (ECM), hold...
Molecular and mechanical interactions with the 3D extracellular matrix are essential for cell functi...
Historically, cell behavior has been investigated by removing cells from their native environment an...
<p>Artificial 3-dimensional (3D) cell culture systems, which mimic the extracellular matrix (ECM), h...
Molecular and mechanical interactions with the 3D extracellular matrix are essential for cell functi...
Artificial 3-dimensional (3D) cell culture systems, which mimic the extracellular matrix (ECM), hold...
Over the past decade, methods to culture stem cells in three dimensions have opened up a plethora of...
Cellular phenotype is heavily influenced by the extracellular matrix (ECM), a complex and tissue-spe...
Mechanical responsiveness is essential to all biological systems down to the level of tissues and ce...
Engineering synthetic hydrogels on a molecular basis to introduce natural features that are importan...
Natural extracellular matrices (ECMs) are viscoelastic and exhibit stress relaxation. However, hydro...