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Complex 3D bioprinting methods
DOI:10.1063/5.0034901.png)
Abstract
En 中文
3D bioprinting technology is evolving in complexity to enable human-scale, high-resolution, and multi-cellular constructs to better mimic the native tissue microenvironment. The ultimate goal is to achieve necessary complexity in the bioprinting process to biomanufacture fully-functional tissues and organs to address organ shortage and lack of patient-specific disease models. In this Review, we presented an in-depth overview of complex 3D bioprinting approaches including evolution of complex bioprinting, from simple gel-casting approach to multi-material bioprinting to omnidirectional bioprinting approaches, and emerging bioprinting approaches, including 4D bioprinting and in situ bioprinting technologies.
Keywords:
DECELLULARIZED EXTRACELLULAR-MATRIX
TISSUE CONSTRUCTS
2-PHOTON POLYMERIZATION
CELL
HYDROGELS
BIOFABRICATION
BIOMATERIALS
BONE
STEREOLITHOGRAPHY
FABRICATION
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Journal
IF:
4.1
Papers:
491
Citations:
1.7K
Organization
Cited Papers
3D Bioprinting Strategies for the Regeneration of Functional Tubular Tissues and Organs
BIOENGINEERING-BASEL
IF3.7

