AbstractTissue engineering strategies for repairing and regenerating articular cartilage face critical challenges to recapitulate the dynamic and complex biochemical microenvironment of native tissues. One approach to mimic the biochemical complexity of articular cartilage is through the use of recombinant bacterial collagens as they provide a well–defined biological ‘blank template’ that can be modified to incorporate bioactive and biodegradable peptide sequences within a precisely defined three–dimensional system. We customized the backbone of a Streptococcal collagen–like 2 (Scl2) protein with heparin–binding, integrin–binding, and hyaluronic acid–binding peptide sequences previously shown to modulate chondrogenesis and then cross–linked...
Thesis (Ph. D. in Bioengineering)--Massachusetts Institute of Technology, Biological Engineering Div...
Methacrylated hyaluronic acid (MeHA) and chondroitin sulfate (CS)-biofunctionalized MeHA(CS-MeHA), w...
This thesis has led to the development of a novel highly porous collagen-based scaffold for enhanced...
AbstractTissue engineering strategies for repairing and regenerating articular cartilage face critic...
Recapitulation of the articular cartilage microenvironment for regenerative medicine applications fa...
Regenerative medicine strategies for restoring articular cartilage face significant challenges to re...
The development of tissue–engineered articular cartilage through the use of scaffold systems to repa...
Recapitulation of the articular cartilage microenvironment for regenerative medicine applications fa...
Collagen I foams are used in the clinic as scaffolds to promote articular cartilage repair as they p...
Promising strategies for cartilage regeneration rely on the encapsulation of mesenchymal stromal cel...
Cartilage tissue engineering using biodegradable scaffolds as carriers for cartilage cells (chondroc...
Cartilage damage affects a large population via acute and chronic injury and disease. Since native c...
Photocrosslinked methacrylated hyaluronic acid (MeHA) hydrogels support chondrogenesis of encapsulat...
Healing joint articular cartilage is a significant clinical challenge because it lacks self-healing ...
A new type of synthetic hydrogel scaffold that mimics certain aspects of structure and function of n...
Thesis (Ph. D. in Bioengineering)--Massachusetts Institute of Technology, Biological Engineering Div...
Methacrylated hyaluronic acid (MeHA) and chondroitin sulfate (CS)-biofunctionalized MeHA(CS-MeHA), w...
This thesis has led to the development of a novel highly porous collagen-based scaffold for enhanced...
AbstractTissue engineering strategies for repairing and regenerating articular cartilage face critic...
Recapitulation of the articular cartilage microenvironment for regenerative medicine applications fa...
Regenerative medicine strategies for restoring articular cartilage face significant challenges to re...
The development of tissue–engineered articular cartilage through the use of scaffold systems to repa...
Recapitulation of the articular cartilage microenvironment for regenerative medicine applications fa...
Collagen I foams are used in the clinic as scaffolds to promote articular cartilage repair as they p...
Promising strategies for cartilage regeneration rely on the encapsulation of mesenchymal stromal cel...
Cartilage tissue engineering using biodegradable scaffolds as carriers for cartilage cells (chondroc...
Cartilage damage affects a large population via acute and chronic injury and disease. Since native c...
Photocrosslinked methacrylated hyaluronic acid (MeHA) hydrogels support chondrogenesis of encapsulat...
Healing joint articular cartilage is a significant clinical challenge because it lacks self-healing ...
A new type of synthetic hydrogel scaffold that mimics certain aspects of structure and function of n...
Thesis (Ph. D. in Bioengineering)--Massachusetts Institute of Technology, Biological Engineering Div...
Methacrylated hyaluronic acid (MeHA) and chondroitin sulfate (CS)-biofunctionalized MeHA(CS-MeHA), w...
This thesis has led to the development of a novel highly porous collagen-based scaffold for enhanced...