Cell encapsulation technology is still a challenging issue. Innovative methodologies such as additive manufacturing, and alternative bioprocesses, such as cell therapeutic delivery, where cell encapsulation is a key tool are rapidly gaining importance for their potential in regenerative medicine. Responsive materials such as elastin-based recombinant expression products have features that are particularly attractive for cell encapsulation. They can be designed and tailored to meet desired requirements. Thus, they represent promising candidates for the development of new concept-based materials that can be employed in this field
Regenerative medicine using stem cells offers promising strategies for treating a variety of degener...
Elastin-like recombinamers (ELRs) are smart, protein-based polymers designed with desired peptide se...
Elastin-like polypeptides (ELPs) are macromolecular biopolymers composed of natural amino acids. ELP...
In the rapidly expanding fields of tissue engineering and regenerative medicine, stem cells represen...
Mimicking the structure of natural proteins by recombinant biopolymers is a useful approach for the ...
Elastin-based polypeptides are a class of smart biopolymers representing an important model in the d...
Mesenchymal stem cells have attracted great interest in the field of tissue engineering and regenera...
Biomaterials based upon elastin and elastin-derived molecules are increasingly investigated for thei...
Elastin like polypeptides (ELPs) are a class of naturally derived biomaterials that are non-immunoge...
Tropoelastin, elastin and elastin-derived peptides are very interesting molecules for the production...
Elastomeric protein-based biomaterials, produced from elastin derivatives, are widely investigated a...
Mesenchymal stem cells have attracted great interest in the field of tissue engineering and regenera...
Elastin-like peptides (ELPs) are stimulus-responsive protein-based polymers which are attractive mat...
Currently, there is a growing interest in new biomaterials that resemble the extracellular environme...
The successful development of efficient and safe gene delivery vectors continues to be a major obsta...
Regenerative medicine using stem cells offers promising strategies for treating a variety of degener...
Elastin-like recombinamers (ELRs) are smart, protein-based polymers designed with desired peptide se...
Elastin-like polypeptides (ELPs) are macromolecular biopolymers composed of natural amino acids. ELP...
In the rapidly expanding fields of tissue engineering and regenerative medicine, stem cells represen...
Mimicking the structure of natural proteins by recombinant biopolymers is a useful approach for the ...
Elastin-based polypeptides are a class of smart biopolymers representing an important model in the d...
Mesenchymal stem cells have attracted great interest in the field of tissue engineering and regenera...
Biomaterials based upon elastin and elastin-derived molecules are increasingly investigated for thei...
Elastin like polypeptides (ELPs) are a class of naturally derived biomaterials that are non-immunoge...
Tropoelastin, elastin and elastin-derived peptides are very interesting molecules for the production...
Elastomeric protein-based biomaterials, produced from elastin derivatives, are widely investigated a...
Mesenchymal stem cells have attracted great interest in the field of tissue engineering and regenera...
Elastin-like peptides (ELPs) are stimulus-responsive protein-based polymers which are attractive mat...
Currently, there is a growing interest in new biomaterials that resemble the extracellular environme...
The successful development of efficient and safe gene delivery vectors continues to be a major obsta...
Regenerative medicine using stem cells offers promising strategies for treating a variety of degener...
Elastin-like recombinamers (ELRs) are smart, protein-based polymers designed with desired peptide se...
Elastin-like polypeptides (ELPs) are macromolecular biopolymers composed of natural amino acids. ELP...