透明质酸
脚手架
生物反应器
明胶
自愈水凝胶
3D生物打印
材料科学
产量(工程)
组织工程
发酵
3D打印
3d打印
化学工程
生物医学工程
纳米技术
化学
生物化学
复合材料
有机化学
高分子化学
解剖
生物
工程类
医学
作者
Zhenhua Cui,Yanwen Feng,Lei Zhu,Lelun Jiang,Jun Yue
出处
期刊:ACS Macro Letters
[American Chemical Society]
日期:2022-03-17
卷期号:11 (4): 452-459
被引量:19
标识
DOI:10.1021/acsmacrolett.2c00037
摘要
3D bioprinting of living materials represents an interesting paradigm toward the efficacy enhancement for the biosynthesis of various functional compounds in microorganisms. Previous studies have shown the success of 3D-printed bioactive systems in the production of small molecular compounds. However, the feasibility of such a strategy in producing macromolecules and how the geometry of the 3D scaffold influences the productivity are still unknown. In this study, we printed a series of 3D gelatin-based hydrogels immobilized with fermentation bacteria that can secrete hyaluronic acid (HA), a very useful natural polysaccharide in the fields of biomedicine and tissue engineering. The 3D-printed bioreactor was capable of producing HA, and an elevated yield was obtained with the system bearing a grid structure compared to that either with a solid structure or in a scaffold-free fermentation condition. As for the grid structure, bioreactors with a 90° strut angel and a median interfilament distance displayed the highest HA yield. Our findings highlighted the significant role of 3D printing in the spatial control of microorganism-laden hydrogel structures for the enhancement of biosynthesis efficiency.
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