3D生物打印
乳状液
材料科学
明胶
纳米技术
右旋糖酐
组织工程
生物医学工程
化学
化学工程
色谱法
工程类
生物化学
作者
Jie Tao,Shunyao Zhu,Nazi Zhou,Yu Wang,Haoyuan Wan,Lin Zhang,Ya‐Ping Tang,Yingzi Pan,Yang Yang,Jianxiang Zhang,Rui Liu
标识
DOI:10.1002/adhm.202102810
摘要
Abstract A challenge for bioprinting tissue constructs is enabling the viability and functionality of encapsulated cells. Rationally designed bioink that can create appropriate biophysical cues shows great promise for overcoming such challenges. Here, a nanoparticle‐stabilized emulsion bioink for direct fabrication of porous tissue constructs by digital light processing based 3D bioprinting technology is introduced. The emulsion bioink is integrated by the mixture of aqueous dextran microdroplets and gelatin methacryloyl solution and is further rendered stable by β ‐lactoglobulin nanoparticles. After bioprinting, the printed tissue constructs create the macroporous structure via removal of dextran, thereby providing favorable biophysical cues to promote the viability, proliferation, and spreading of the encapsulated cells. Moreover, a trachea‐shaped construct containing chondrocytes is bioprinted and implanted in vivo. The results demonstrate that the generated macroporous construct is of benefit to cartilage tissue rebuilding. This work offers an advanced bioink for the fabrication of living tissue constructs by activating the cell behaviors and functions in situ and can lead to the development of 3D bioprinting.
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