材料科学
3d打印
3D生物打印
3D打印
比例(比率)
生物医学工程
自愈水凝胶
生物加工
脚手架
明胶
天然组织
生物相容性材料
作者
Hepi Hari Susapto,Dana Alhattab,Sherin Abdelrahman,Zainab Khan,Salwa Alshehri,Kowther Kahin,Rui Ge,Manola Moretti,Abdul-Hamid M. Emwas,Charlotte A. E. Hauser
出处
期刊:Nano Letters
[American Chemical Society]
日期:2021-01-25
卷期号:21 (7): 2719-2729
被引量:14
标识
DOI:10.1021/acs.nanolett.0c04426
摘要
We report about rationally designed ultrashort peptide bioinks, overcoming severe limitations in current bioprinting procedures. Bioprinting is increasingly relevant in tissue engineering, regenerative and personalized medicine due to its ability to fabricate complex tissue scaffolds through an automated deposition process. Printing stable large-scale constructs with high shape fidelity and enabling long-term cell survival are major challenges that most existing bioinks are unable to solve. Additionally, they require chemical or UV-cross-linking for the structure-solidifying process which compromises the encapsulated cells, resulting in restricted structure complexity and low cell viability. Using ultrashort peptide bioinks as ideal bodylike but synthetic material, we demonstrate an instant solidifying cell-embedding printing process via a sophisticated extrusion procedure under true physiological conditions and at cost-effective low bioink concentrations. Our printed large-scale cell constructs and the chondrogenic differentiation of printed mesenchymal stem cells point to the strong potential of the peptide bioinks for automated complex tissue fabrication.
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