Fabricating 3D large-scale bone tissue constructs with functional vasculature has been a particular challenge in engineering tissues suitable for repairing large bone defects. To address this challenge, an extrusion-based direct-writing bioprinting strategy is utilized to fabricate microstructured bone-like tissue constructs containing a perfusable vascular lumen. The bioprinted constructs are used as biomimetic in vitro matrices to co-culture human umbilical vein endothelial cells and bone marrow derived human mesenchymal stem cells in a naturally derived hydrogel. To form the perfusable blood vessel inside the bioprinted construct, a central cylinder with 5% gelatin methacryloyl (GelMA) hydrogel at low methacryloyl substitution (GelMALOW ...
Microfabrication technologies have been proposed as methods to create vascularized tissues. However,...
Microfabrication technologies have been proposed as methods to create vascularized tissues. However,...
Advances in bioprinting have enabled the fabrication of complex tissue constructs with high speed an...
Fabricating 3D large-scale bone tissue constructs with functional vasculature has been a particular ...
Fabricating 3D large-scale bone tissue constructs with functional vasculature has been a particular ...
Bone tissue is highly vascularized. The crosstalk of vascular and osteogenic cells is not only respo...
International audienceA major challenge during the engineering of voluminous bone tissues is to main...
Bone tissue is one of the most frequently transplanted tissues. Since procedures like the transplant...
International audienceA major challenge during the engineering of voluminous bone tissues is to main...
A major challenge during the engineering of voluminous bone tissues is to maintain cell viability in...
A major challenge during the engineering of voluminous bone tissues is to maintain cell viability in...
A major challenge during the engineering of voluminous bone tissues is to maintain cell viability in...
One of the biggest challenges for tissue engineering is to efficiently provide oxygen and nutrients ...
One of the biggest challenges for tissue engineering is to efficiently provide oxygen and nutrients ...
One of the major challenges facing the field of tissue engineering today is vascularisation. Without...
Microfabrication technologies have been proposed as methods to create vascularized tissues. However,...
Microfabrication technologies have been proposed as methods to create vascularized tissues. However,...
Advances in bioprinting have enabled the fabrication of complex tissue constructs with high speed an...
Fabricating 3D large-scale bone tissue constructs with functional vasculature has been a particular ...
Fabricating 3D large-scale bone tissue constructs with functional vasculature has been a particular ...
Bone tissue is highly vascularized. The crosstalk of vascular and osteogenic cells is not only respo...
International audienceA major challenge during the engineering of voluminous bone tissues is to main...
Bone tissue is one of the most frequently transplanted tissues. Since procedures like the transplant...
International audienceA major challenge during the engineering of voluminous bone tissues is to main...
A major challenge during the engineering of voluminous bone tissues is to maintain cell viability in...
A major challenge during the engineering of voluminous bone tissues is to maintain cell viability in...
A major challenge during the engineering of voluminous bone tissues is to maintain cell viability in...
One of the biggest challenges for tissue engineering is to efficiently provide oxygen and nutrients ...
One of the biggest challenges for tissue engineering is to efficiently provide oxygen and nutrients ...
One of the major challenges facing the field of tissue engineering today is vascularisation. Without...
Microfabrication technologies have been proposed as methods to create vascularized tissues. However,...
Microfabrication technologies have been proposed as methods to create vascularized tissues. However,...
Advances in bioprinting have enabled the fabrication of complex tissue constructs with high speed an...