Polysaccharide-based hydrogels are remarkable materials for the development of tissue engineering strategies as they meet several critical requirements for such applications and they may partly mimic the extracellular matrix. Chitosan is widely envisioned as hydrogel in biomedical fields for its bioresorbability, biocompatibility, and fungistatic and bacteriostatic properties. In this study, we report that the modulation of the polymer concentration, the degree of acetylation, the gelation processes [or neutralization routes (NR)] in the preparation of different chitosan-based hydrogels lead to substantially and significantly different biological responses. We show that it is possible to tune the physicochemical characteristics, mechanical ...
In situ forming hydrogels generated upon spontaneous and biocompatible reaction between two polymeri...
Mechanical properties of the extracellular matrix have a profound effect on the behavior of anchorag...
Application of human mesenchymal stem cells brings a new hope for advanced wound healing. To enable ...
Polysaccharide-based hydrogels are remarkable materials for the development of tissue engineering st...
AbstractChitosan, a natural cationic polysaccharide, is prepared industrially by the hydrolysis of t...
The possibility to combine natural and synthetic polymer characteristics is certainly one of the mos...
In situ forming hydrogels generated upon spontaneous and biocompatible reaction under physiological ...
Most hydrogels involve synthetic polymers and organic cross-linkers that cannot simultaneously fulfi...
Scaffold material is one of the three key factors in tissue engineering. Among the architectures of ...
Chitosan is one of the most well-known and characterized materials applied in tissue engineering. Du...
The regeneration of soft tissues that connect, support or surround other tissues is of great interes...
Thesis (Master's)--University of Washington, 2022Osteoarthritis of the knee (KOA) is a degenerative ...
A hydrogel platform using visible light inducible methacrylated glycol chitosan and riboflavin, an a...
Hydrogels are fascinating biomaterials that can act as a support for cells, i.e., a scaffold, in whi...
Chitosan (CS) is the deacetylated derivative of the biopolymer chitin. The attractiveness of chitosa...
In situ forming hydrogels generated upon spontaneous and biocompatible reaction between two polymeri...
Mechanical properties of the extracellular matrix have a profound effect on the behavior of anchorag...
Application of human mesenchymal stem cells brings a new hope for advanced wound healing. To enable ...
Polysaccharide-based hydrogels are remarkable materials for the development of tissue engineering st...
AbstractChitosan, a natural cationic polysaccharide, is prepared industrially by the hydrolysis of t...
The possibility to combine natural and synthetic polymer characteristics is certainly one of the mos...
In situ forming hydrogels generated upon spontaneous and biocompatible reaction under physiological ...
Most hydrogels involve synthetic polymers and organic cross-linkers that cannot simultaneously fulfi...
Scaffold material is one of the three key factors in tissue engineering. Among the architectures of ...
Chitosan is one of the most well-known and characterized materials applied in tissue engineering. Du...
The regeneration of soft tissues that connect, support or surround other tissues is of great interes...
Thesis (Master's)--University of Washington, 2022Osteoarthritis of the knee (KOA) is a degenerative ...
A hydrogel platform using visible light inducible methacrylated glycol chitosan and riboflavin, an a...
Hydrogels are fascinating biomaterials that can act as a support for cells, i.e., a scaffold, in whi...
Chitosan (CS) is the deacetylated derivative of the biopolymer chitin. The attractiveness of chitosa...
In situ forming hydrogels generated upon spontaneous and biocompatible reaction between two polymeri...
Mechanical properties of the extracellular matrix have a profound effect on the behavior of anchorag...
Application of human mesenchymal stem cells brings a new hope for advanced wound healing. To enable ...