Polymeric hydrogels are fascinating platforms as 3D scaffolds for tissue repair and delivery systems of therapeutic molecules and cells. Among others, methacrylated gelatin (GelMA) …
HQ Xu, JC Liu, ZY Zhang, CX Xu - Military Medical Research, 2022 - Springer
Abstract Three-dimensional (3D) bioprinting fabricates 3D functional tissues/organs by accurately depositing the bioink composed of the biological materials and living cells. Even …
Light-based vat-polymerization bioprinting enables computer-aided patterning of 3D cell- laden structures in a point-by-point, layer-by-layer or volumetric manner, using vat (vats) …
The encapsulation of cells within gel‐phase materials to form bioinks offers distinct advantages for next‐generation 3D bioprinting. 3D bioprinting has emerged as a promising …
Bioprinting is a tool increasingly used in tissue engineering laboratories around the world. As an extension to classic tissue engineering, it enables high levels of control over the …
In recent years, three-dimensional (3D) bioprinting has attracted wide research interest in biomedical engineering and clinical applications. This technology allows for unparalleled …
Z Fu, L Ouyang, R Xu, Y Yang, W Sun - Materials Today, 2022 - Elsevier
Abstract Three-dimensional (3D) bioprinting enables a controlled deposition of cells, biomaterials, and biological compounds (ie, bioinks) to build complex 3D biological models …
Recent years have seen major advances in the developments of both additive manufacturing concepts and responsive materials. When combined as 4D printing, the …
F Puza, K Lienkamp - Advanced Functional Materials, 2022 - Wiley Online Library
This review discusses the currently available 3D printing approaches, design concepts, and materials that are used to obtain programmable hydrogel actuators. These polymer …