基于微生物的活体材料的三维生物打印技术,用于先进能源和环境应用

Xingqun Pu, Yuqi Wu, Junqiu Liu* and Baiheng Wu*, 
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引用次数: 0

摘要

微生物作为超级生物工厂,在生产所需物质和修复环境方面发挥着至关重要的作用。三维生物打印技术的出现为将微生物和聚合物工程化为具有精致结构的活体材料提供了强有力的工具,为拓展功能和实现非凡性能铺平了道路。本文从材料角度全面探讨了目前基于微生物的三维打印活体材料的研究进展,涵盖了各种三维生物打印技术、所用微生物的类型以及聚合物生物墨水的关键参数和选择标准。然后强调了三维打印生物材料在能源和环境领域的应用。最后,强调了这一新兴领域所面临的挑战和未来趋势。我们希望我们的观点能够启发一些有趣的想法,并加速这一领域的探索,从而为能源和环境挑战提供卓越的解决方案。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

3D Bioprinting of Microbial-based Living Materials for Advanced Energy and Environmental Applications

3D Bioprinting of Microbial-based Living Materials for Advanced Energy and Environmental Applications

Microorganisms, serving as super biological factories, play a crucial role in the production of desired substances and the remediation of environments. The emergence of 3D bioprinting provides a powerful tool for engineering microorganisms and polymers into living materials with delicate structures, paving the way for expanding functionalities and realizing extraordinary performance. Here, the current advancements in microbial-based 3D-printed living materials are comprehensively discussed from material perspectives, covering various 3D bioprinting techniques, types of microorganisms used, and the key parameters and selection criteria for polymer bioinks. Endeavors on the applications of 3D printed living materials in the fields of energy and environment are then emphasized. Finally, the remaining challenges and future trends in this burgeoning field are highlighted. We hope our perspective will inspire some interesting ideas and accelerate the exploration within this field to reach superior solutions for energy and environment challenges.

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