Hydrogels comprising natural extracellular matrix (ECM) components are very attractive as scaffolds for regenerative medicine applications due to their inherent biointeractive properties. Responsive materials that adapt to their surrounding environments and regulate transport of ions and bioactive molecules manifest significant advantages for biomedical applications. Although there are many exciting challenges, the opportunity to design, fabricate and engineer stimuli-responsive polymeric systems based on ECM components is particularly attractive for regenerative medicine. Here we describe a one-pot approach to fabricate in situ fast gellable intelligent ECM mimetic scaffolds, based on methacrylated collagen building blocks with mechanical ...
textIn recent years, significant success has been made in the field of regenerative medicine. Tissue...
textIn recent years, significant success has been made in the field of regenerative medicine. Tissue...
In the past few years researchers have witnessed a paradigm shift in the development of biomaterials...
Hydrogels comprising natural extracellular matrix (ECM) components are very attractive as scaffolds ...
Hydrogels comprising natural extracellular matrix (ECM) components are very attractive as scaffolds ...
Due to their highly hydrophilic nature and compositional versatility, hydrogels have assumed a prota...
Biomimetic scaffolds mimic important features of the extracellular matrix (ECM) architecture and can...
Biohybrid materials combining synthetic polymers with biological components are highly suited for ti...
New generations of protein-based hydrogels are being developed rapidly over the last several decades...
New generations of protein-based hydrogels are being developed rapidly over the last several decades...
Biomimetic poly (ethylene glycol) (PEG)-based hydrogels have been widely explored as extracellular m...
The extracellular matrix (ECM) is the non-cellular component of tissue that provides physical scaffo...
Next generation of biomaterials with enhanced functionalities requires the integration of material s...
<p>Artificial 3-dimensional (3D) cell culture systems, which mimic the extracellular matrix (ECM), h...
Native human tissues are supported by a viscoelastic extracellular matrix (ECM) that can adapt its i...
textIn recent years, significant success has been made in the field of regenerative medicine. Tissue...
textIn recent years, significant success has been made in the field of regenerative medicine. Tissue...
In the past few years researchers have witnessed a paradigm shift in the development of biomaterials...
Hydrogels comprising natural extracellular matrix (ECM) components are very attractive as scaffolds ...
Hydrogels comprising natural extracellular matrix (ECM) components are very attractive as scaffolds ...
Due to their highly hydrophilic nature and compositional versatility, hydrogels have assumed a prota...
Biomimetic scaffolds mimic important features of the extracellular matrix (ECM) architecture and can...
Biohybrid materials combining synthetic polymers with biological components are highly suited for ti...
New generations of protein-based hydrogels are being developed rapidly over the last several decades...
New generations of protein-based hydrogels are being developed rapidly over the last several decades...
Biomimetic poly (ethylene glycol) (PEG)-based hydrogels have been widely explored as extracellular m...
The extracellular matrix (ECM) is the non-cellular component of tissue that provides physical scaffo...
Next generation of biomaterials with enhanced functionalities requires the integration of material s...
<p>Artificial 3-dimensional (3D) cell culture systems, which mimic the extracellular matrix (ECM), h...
Native human tissues are supported by a viscoelastic extracellular matrix (ECM) that can adapt its i...
textIn recent years, significant success has been made in the field of regenerative medicine. Tissue...
textIn recent years, significant success has been made in the field of regenerative medicine. Tissue...
In the past few years researchers have witnessed a paradigm shift in the development of biomaterials...