This study investigates the use of allyl-functionalized poly(glycidol)s (P(AGE-co-G)) as a cytocompatible cross-linker for thiol-functionalized hyaluronic acid (HA-SH) and the optimization of this hybrid hydrogel as bioink for 3D bioprinting. The chemical cross-linking of gels with 10 wt.% overall polymer concentration was achieved by a UV-induced radical thiol-ene coupling between the thiol and allyl groups. The addition of unmodified high molecular weight HA (1.36 MDa) enabled the rheology to be tuned for extrusion-based bioprinting. The incorporation of additional HA resulted in hydrogels with a lower Young's modulus and a higher swelling ratio, especially in the first 24 h, but a comparable equilibrium swelling for all gels after 24 h. ...
Development of biomaterial-based bioinks is critical for replacement and/or regeneration of tissues ...
Hydrogels based on triblock copolymers of polyethylene glycol and partially methacrylated poly[<i>N...
The aim ofthis study was to design a hydrogel system based on methacrylated chondroitin sulfate (CSM...
This study investigates the use of allyl-functionalized poly(glycidol)s (P(AGE-co-G)) as a cytocompa...
This study investigates the use of allyl-functionalized poly(glycidol)s (P(AGE-co-G)) as cytocompati...
3D bioprinting often involves application of highly concentrated polymeric bioinks to enable fabrica...
Progress in biofabrication technologies is mainly hampered by the limited number of suitable hydroge...
Bioprinting is a promising tool to fabricate well-organized cell-laden constructs for repair and reg...
Progress within the field of biofabrication is hindered by a lack of suitable hydrogel formulations....
Hydrogels based on triblock copolymers of polyethylene glycol and partially methacrylated poly[N-(2-...
Various hydrogel systems have been developed as biomaterial inks for bioprinting, including natural ...
In this work we demonstrate how to print 3D biomimetic hydrogel scaffolds for cartilage tissue engin...
To date, the treatment of articular cartilage lesions remains challenging. A promising strategy for ...
In the future the field of medicine will be directed towards tailored treatments and per-sonalized m...
Development of biomaterial-based bioinks is critical for replacement and/or regeneration of tissues ...
Hydrogels based on triblock copolymers of polyethylene glycol and partially methacrylated poly[<i>N...
The aim ofthis study was to design a hydrogel system based on methacrylated chondroitin sulfate (CSM...
This study investigates the use of allyl-functionalized poly(glycidol)s (P(AGE-co-G)) as a cytocompa...
This study investigates the use of allyl-functionalized poly(glycidol)s (P(AGE-co-G)) as cytocompati...
3D bioprinting often involves application of highly concentrated polymeric bioinks to enable fabrica...
Progress in biofabrication technologies is mainly hampered by the limited number of suitable hydroge...
Bioprinting is a promising tool to fabricate well-organized cell-laden constructs for repair and reg...
Progress within the field of biofabrication is hindered by a lack of suitable hydrogel formulations....
Hydrogels based on triblock copolymers of polyethylene glycol and partially methacrylated poly[N-(2-...
Various hydrogel systems have been developed as biomaterial inks for bioprinting, including natural ...
In this work we demonstrate how to print 3D biomimetic hydrogel scaffolds for cartilage tissue engin...
To date, the treatment of articular cartilage lesions remains challenging. A promising strategy for ...
In the future the field of medicine will be directed towards tailored treatments and per-sonalized m...
Development of biomaterial-based bioinks is critical for replacement and/or regeneration of tissues ...
Hydrogels based on triblock copolymers of polyethylene glycol and partially methacrylated poly[<i>N...
The aim ofthis study was to design a hydrogel system based on methacrylated chondroitin sulfate (CSM...