Research over the past decade on the cell-biomaterial interface has shifted to the third dimension. Besides mimicking the native extracellular environment by 3D cell culture, hydrogels offer the possibility to generate well-defined 3D biofabricated tissue analogs. In this context, gelatin-methacryloyl (gelMA) hydrogels have recently gained increased attention. This interest is sparked by the combination of the inherent bioactivity of gelatin and the physicochemical tailorability of photo-crosslinkable hydrogels. GelMA is a versatile matrix that can be used to engineer tissue analogs ranging from vasculature to cartilage and bone. Convergence of biological and biofabrication approaches is necessary to progress from merely proving cell functi...
Gelatin-methacrylamide (gelMA) hydrogels are shown to support chondrocyte viability and differentiat...
Gelatin-methacrylamide (gelMA) hydrogels are shown to support chondrocyte viability and differentiat...
Gelatin-methacrylamide (gelMA) hydrogels are shown to support chondrocyte viability and differentiat...
Research over the past decade on the cell-biomaterial interface has shifted to the third dimension. ...
Research over the past decade on the cell-biomaterial interface has shifted to the third dimension. ...
Research over the past decade on the cell-biomaterial interface has shifted to the third dimension. ...
Research over the past decade on the cell-biomaterial interface has shifted to the third dimension. ...
Research over the past decade on the cell-biomaterial interface has shifted to the third dimension. ...
Progress in advancing a system-level understanding of the complexity of human tissue development and...
Progress in advancing a system-level understanding of the complexity of human tissue development and...
Gelatin methacryloyl (GelMA) hydrogels have been widely used for various biomedical applications due...
Progress in advancing a system-level understanding of the complexity of human tissue development and...
Progress in advancing a system-level understanding of the complexity of human tissue development and...
Gelatin methacryloyl (GelMA) hydrogels have been widely used for various biomedical applications due...
Gelatin-methacryloyl (GelMA) is a semi-synthetic hydrogel which consists of gelatin derivatized with...
Gelatin-methacrylamide (gelMA) hydrogels are shown to support chondrocyte viability and differentiat...
Gelatin-methacrylamide (gelMA) hydrogels are shown to support chondrocyte viability and differentiat...
Gelatin-methacrylamide (gelMA) hydrogels are shown to support chondrocyte viability and differentiat...
Research over the past decade on the cell-biomaterial interface has shifted to the third dimension. ...
Research over the past decade on the cell-biomaterial interface has shifted to the third dimension. ...
Research over the past decade on the cell-biomaterial interface has shifted to the third dimension. ...
Research over the past decade on the cell-biomaterial interface has shifted to the third dimension. ...
Research over the past decade on the cell-biomaterial interface has shifted to the third dimension. ...
Progress in advancing a system-level understanding of the complexity of human tissue development and...
Progress in advancing a system-level understanding of the complexity of human tissue development and...
Gelatin methacryloyl (GelMA) hydrogels have been widely used for various biomedical applications due...
Progress in advancing a system-level understanding of the complexity of human tissue development and...
Progress in advancing a system-level understanding of the complexity of human tissue development and...
Gelatin methacryloyl (GelMA) hydrogels have been widely used for various biomedical applications due...
Gelatin-methacryloyl (GelMA) is a semi-synthetic hydrogel which consists of gelatin derivatized with...
Gelatin-methacrylamide (gelMA) hydrogels are shown to support chondrocyte viability and differentiat...
Gelatin-methacrylamide (gelMA) hydrogels are shown to support chondrocyte viability and differentiat...
Gelatin-methacrylamide (gelMA) hydrogels are shown to support chondrocyte viability and differentiat...