In the tissue engineering field, the design of the scaffold inspired on the natural occurring tissue is of vital importance. Ideally, the scaffold surface must promote cell growth and differentiation, while promote angiogenesis in the in vivo implant of the scaffold. On the other hand, the material selection must be biocompatible and the degradation times should meet tissue reparation times. In the present work, we developed a nanofibrous scaffold based on chitosan crosslinked with diisopropylfumarate-vinyl acetate copolymer using anodized aluminum oxide (AAO) templates. We have previously demonstrated its biocompatibility properties with low cytotoxicity and proper degradation times. Now, we extended our studies to demonstrate that it can ...
Tissue engineering sustains the need of a three-dimensional (3D) scaffold to promote the regenerati...
Reconstruction of large bone defects remains problematic in orthopedic and craniofacial clinical pra...
Dissertação de mestrado integrado em Engenharia Biomédica (área de especialização em Biomateriais, R...
In the tissue engineering field, the design of the scaffold inspired on the natural occurring tissue...
In the tissue engineering field, the design of the scaffold inspired on the natural occurring tissue...
Bone tissue is the second tissue to be replaced. Annually, over four million surgical treatments are...
An innovative approach was developed to engineer a multi-layered chitosan scaffold for osteochondral...
Lesions involving the osteochondral unit are difficult to treat. Biomimetic scaffolds are previously...
In the last decade, regenerative medicine has benefited from the exponential development of nanomate...
Bone is a highly organised and specialised connective tissue with natural ability to self-heal and ...
[Excerpt] Fibrous structures mimicking the natural extracellular matrix (ECM) morphology are conside...
Designing biomaterials for bone-substitute applications is still a challenge regarding the natural c...
Scaffolds are porous three-dimensional supports, designed to mimic the extracellular environment and...
One possible interesting way of designing a scaffold for bone tissue engineering is to base it on t...
Natural and synthetic cross-linked polymers allow the improvement of cytocompatibility and mechanica...
Tissue engineering sustains the need of a three-dimensional (3D) scaffold to promote the regenerati...
Reconstruction of large bone defects remains problematic in orthopedic and craniofacial clinical pra...
Dissertação de mestrado integrado em Engenharia Biomédica (área de especialização em Biomateriais, R...
In the tissue engineering field, the design of the scaffold inspired on the natural occurring tissue...
In the tissue engineering field, the design of the scaffold inspired on the natural occurring tissue...
Bone tissue is the second tissue to be replaced. Annually, over four million surgical treatments are...
An innovative approach was developed to engineer a multi-layered chitosan scaffold for osteochondral...
Lesions involving the osteochondral unit are difficult to treat. Biomimetic scaffolds are previously...
In the last decade, regenerative medicine has benefited from the exponential development of nanomate...
Bone is a highly organised and specialised connective tissue with natural ability to self-heal and ...
[Excerpt] Fibrous structures mimicking the natural extracellular matrix (ECM) morphology are conside...
Designing biomaterials for bone-substitute applications is still a challenge regarding the natural c...
Scaffolds are porous three-dimensional supports, designed to mimic the extracellular environment and...
One possible interesting way of designing a scaffold for bone tissue engineering is to base it on t...
Natural and synthetic cross-linked polymers allow the improvement of cytocompatibility and mechanica...
Tissue engineering sustains the need of a three-dimensional (3D) scaffold to promote the regenerati...
Reconstruction of large bone defects remains problematic in orthopedic and craniofacial clinical pra...
Dissertação de mestrado integrado em Engenharia Biomédica (área de especialização em Biomateriais, R...