Fibrous materials have morphological similarities to natural cartilage extracellular matrix and have been considered as candidate for bone tissue engineering scaffolds. In this study, we have evaluated a novel electrospun chitosan mat composed of oriented sub-micron fibers for its tensile property and biocompatibility with chondrocytes (cell attachment, proliferation and viability). Scanning electronic microscope images showed the fibers in the electrospun chitosan mats were indeed aligned and there was a slight cross-linking between the parent fibers. The electrospun mats have significantly higher elastic modulus (2.25 MPa) than the cast films (1.19 MPa). Viability of cells on the electrospun mat was 69% of the cells on tissue-culture poly...
The field of articular cartilage tissue engineering has developed rapidly, and chitosan has become a...
ii The biocompatibility of chitosan and its similarity with glycosaminoglycans make it attractive fo...
The objective of this project is to grow biodegradable chitosan fibers that will be used as a scaffo...
Fibrous materials have morphological similarities to natural cartilage extracellular matrix and have...
Paper presented at the 2006 IEEE 32nd Annual Northeast Bioengineering Conference, Easton, PA.Chitosa...
The biocompatibility of chitosan and its similarity with glycosaminoglycans make it attractive for c...
Electrospinning, which is a fiber fabrication technique using electrical forces to produce fibers wi...
Background: One of the new methods of scaffold fabrication is a nano-micro hybrid structure in which...
Naturally derived polymers have been extensively used in scaffold production for cartilage tissue en...
Towards optimizing the growth of extracellular matrix to produce repair cartilage for healing articu...
With an aim to mimic natural extracellular matrix, we fabricated the nano- and microfibrous matrix w...
With an aim to mimic natural extracellular matrix, we fabricated the nano- and microfibrous matrix w...
Current articular cartilage tissue engineering endeavors, using synthetic polymers as scaffolds, hav...
Polymer hydrogels resemble the natural living tissue due to their high water content and soft consis...
Tissue-engineered neocartilage with appropriate biomechanical properties holds promise not only for ...
The field of articular cartilage tissue engineering has developed rapidly, and chitosan has become a...
ii The biocompatibility of chitosan and its similarity with glycosaminoglycans make it attractive fo...
The objective of this project is to grow biodegradable chitosan fibers that will be used as a scaffo...
Fibrous materials have morphological similarities to natural cartilage extracellular matrix and have...
Paper presented at the 2006 IEEE 32nd Annual Northeast Bioengineering Conference, Easton, PA.Chitosa...
The biocompatibility of chitosan and its similarity with glycosaminoglycans make it attractive for c...
Electrospinning, which is a fiber fabrication technique using electrical forces to produce fibers wi...
Background: One of the new methods of scaffold fabrication is a nano-micro hybrid structure in which...
Naturally derived polymers have been extensively used in scaffold production for cartilage tissue en...
Towards optimizing the growth of extracellular matrix to produce repair cartilage for healing articu...
With an aim to mimic natural extracellular matrix, we fabricated the nano- and microfibrous matrix w...
With an aim to mimic natural extracellular matrix, we fabricated the nano- and microfibrous matrix w...
Current articular cartilage tissue engineering endeavors, using synthetic polymers as scaffolds, hav...
Polymer hydrogels resemble the natural living tissue due to their high water content and soft consis...
Tissue-engineered neocartilage with appropriate biomechanical properties holds promise not only for ...
The field of articular cartilage tissue engineering has developed rapidly, and chitosan has become a...
ii The biocompatibility of chitosan and its similarity with glycosaminoglycans make it attractive fo...
The objective of this project is to grow biodegradable chitosan fibers that will be used as a scaffo...