A one-step microfluidic system is developed in this study which enables the encapsulation of stem cells and genetically engineered non-pathogenic bacteria into a so-called three-dimensional (3D) pearl lace–like microgel of alginate with high level of monodispersity and cell viability. The alginate-based microgel constitutes living materials that control stem cell differentiation in either an autonomous or heteronomous manner. The bacteria (Lactococcus lactis) encapsulated within the construct surface display adhesion fragments (III7-10 fragment of human fibronectin) for integrin binding while secreting growth factors (recombinant human bone morphogenetic protein-2) to induce osteogenic differentiation of human bone marrow–derived mesenchyma...
Existing techniques to encapsulate cells into microscale hydrogels generally yield high polymer-to-c...
Although alginate is widely used as a matrix in the formulation of cell-laden inks, this polymer oft...
Over the last decades, significant progress has been made in the field of implants and medical devic...
A one-step microfluidic system is developed in this study which enables the encapsulation of stem ce...
Monodisperse alginate microgels (10–50 μm) are created via droplet‐based microfluidics by a novel cr...
The development of three-dimensional (3D) fibrous networks as platforms for tissue engineering appli...
Engineering three-dimensional (3D) scaffolds with in vivo like architecture and function has shown g...
Engineering three-dimensional (3D) scaffolds with in vivo like architecture and function has shown g...
Controlling alginate gel formation by diffusion of Ca2+ ions through a filter barrier, a layer-by-la...
Micropores are essential for tissue engineering to ensure adequate mass transportation for embedded ...
A promising approach for engineering artificial stem cell niches is provided by high-throughput micr...
Microfabrication technology provides a versatile platform for engineering hydrogels used in biomedic...
Development of a simple, straight-forward 3D fabrication method to culture cells in 3D, without rely...
Decellularization and cellularization of organs have emerged as disruptive methods in tissue enginee...
The main purpose of the present study has been the investigation of composite microfibers produced w...
Existing techniques to encapsulate cells into microscale hydrogels generally yield high polymer-to-c...
Although alginate is widely used as a matrix in the formulation of cell-laden inks, this polymer oft...
Over the last decades, significant progress has been made in the field of implants and medical devic...
A one-step microfluidic system is developed in this study which enables the encapsulation of stem ce...
Monodisperse alginate microgels (10–50 μm) are created via droplet‐based microfluidics by a novel cr...
The development of three-dimensional (3D) fibrous networks as platforms for tissue engineering appli...
Engineering three-dimensional (3D) scaffolds with in vivo like architecture and function has shown g...
Engineering three-dimensional (3D) scaffolds with in vivo like architecture and function has shown g...
Controlling alginate gel formation by diffusion of Ca2+ ions through a filter barrier, a layer-by-la...
Micropores are essential for tissue engineering to ensure adequate mass transportation for embedded ...
A promising approach for engineering artificial stem cell niches is provided by high-throughput micr...
Microfabrication technology provides a versatile platform for engineering hydrogels used in biomedic...
Development of a simple, straight-forward 3D fabrication method to culture cells in 3D, without rely...
Decellularization and cellularization of organs have emerged as disruptive methods in tissue enginee...
The main purpose of the present study has been the investigation of composite microfibers produced w...
Existing techniques to encapsulate cells into microscale hydrogels generally yield high polymer-to-c...
Although alginate is widely used as a matrix in the formulation of cell-laden inks, this polymer oft...
Over the last decades, significant progress has been made in the field of implants and medical devic...