Despite the significant advances in designing injectable bulk hydrogels, the inability to control the pore interconnectivity and decoupling it from the matrix stiffness has tremendously limited the applicability of stiff, flowable hydrogels for 3D cellular engineering, e.g., in hard tissue engineering. To overcome this persistent challenge, here, we introduce a universal method to convert thermosensitive macromolecules with chemically-crosslinkable moieties into annealable building blocks, forming 3D microporous beaded scaffolds in a bottom-up approach. In particular, we show gelatin methacryloyl (GelMA), a widely used biomaterial in tissue engineering, may be converted into physically-crosslinked microbeads using a facile microfluidic appr...
Culturing cells in a vascularized three-dimensional (3D) hydrogel scaffold has significant applicati...
Microfabrication technology provides a versatile platform for engineering hydrogels used in biomedic...
Therapeutic cell delivery is a major strategy to stimulate the repair in tissue engineering and rege...
Despite the significant advances in designing injectable bulk hydrogels, the inability to control th...
In this article, we describe an approach to generate microporous cell-laden hydrogels for fabricatin...
Biofabrication is the automated manufacturing technology of biologically functional, organized cell-...
Hydrogels are excellent mimetics of mammalian extracellular matrices and have found widespread use i...
Microfabrication technology provides a highly versatile platform for engineering hydrogels used in b...
Abstract Micrometer-sized hydrogels are crosslinked three-dimensional network matrices with high-wat...
The development of advanced functional biomaterials to interact with biological systems has a wide r...
Microfabrication technology provides a highly versatile platform for engineering hydrogels used in b...
The extracellular matrix (ECM) provides tissues with the mechanical support, space, and bioactive si...
Three-dimensional (3D) scaffolds that recapitulate the mammalian extracellular matrix (ECM) have pot...
Vascularization remains a critical challenge in tissue engineering. The development of vascular netw...
Microfabrication technology provides a highly versatile platform for engineering hydrogels used in b...
Culturing cells in a vascularized three-dimensional (3D) hydrogel scaffold has significant applicati...
Microfabrication technology provides a versatile platform for engineering hydrogels used in biomedic...
Therapeutic cell delivery is a major strategy to stimulate the repair in tissue engineering and rege...
Despite the significant advances in designing injectable bulk hydrogels, the inability to control th...
In this article, we describe an approach to generate microporous cell-laden hydrogels for fabricatin...
Biofabrication is the automated manufacturing technology of biologically functional, organized cell-...
Hydrogels are excellent mimetics of mammalian extracellular matrices and have found widespread use i...
Microfabrication technology provides a highly versatile platform for engineering hydrogels used in b...
Abstract Micrometer-sized hydrogels are crosslinked three-dimensional network matrices with high-wat...
The development of advanced functional biomaterials to interact with biological systems has a wide r...
Microfabrication technology provides a highly versatile platform for engineering hydrogels used in b...
The extracellular matrix (ECM) provides tissues with the mechanical support, space, and bioactive si...
Three-dimensional (3D) scaffolds that recapitulate the mammalian extracellular matrix (ECM) have pot...
Vascularization remains a critical challenge in tissue engineering. The development of vascular netw...
Microfabrication technology provides a highly versatile platform for engineering hydrogels used in b...
Culturing cells in a vascularized three-dimensional (3D) hydrogel scaffold has significant applicati...
Microfabrication technology provides a versatile platform for engineering hydrogels used in biomedic...
Therapeutic cell delivery is a major strategy to stimulate the repair in tissue engineering and rege...