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Get Free AccessVolumetric additive manufacturing (VAM) enables fast photopolymerization of three-dimensional constructs by illuminating dynamically evolving light patterns in the entire build volume. However, the lack of bioinks suitable for VAM is a critical limitation. This study reports rapid volumetric (bio)printing of pristine, unmodified silk-based (silk sericin (SS) and silk fibroin (SF)) (bio)inks to form sophisticated shapes and architectures. Of interest, combined with post-fabrication processing, the (bio)printed SS constructs reveal properties including reversible as well as repeated shrinkage and expansion, or shape-memory; whereas the (bio)printed SF constructs exhibit tunable mechanical performances ranging from a few hundred Pa to hundreds of MPa. Both types of silk-based (bio)inks are cytocompatible. This work supplies expanded bioink libraries for VAM and provides a path forward for rapid volumetric manufacturing of silk constructs, towards broadened biomedical applications.
Maobin Xie, Liming Lian, Xuan Mu, Zeyu Luo, Carlos Ezio Garciamendez‐Mijares, Zhenrui Zhang, Arturo López, Jennifer Manríquez, Xiao Kuang, Junqi Wu, Jugal Kishore Sahoo, Federico Zertuche González, Gang Li, Guosheng Tang, Sushila Maharjan, Jie Guo, David Kaplan, Yu Shrike Zhang (2023). Volumetric additive manufacturing of pristine silk-based (bio)inks. , 14(1), DOI: https://doi.org/10.1038/s41467-023-35807-7.
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Type
Article
Year
2023
Authors
18
Datasets
0
Total Files
0
Language
en
DOI
https://doi.org/10.1038/s41467-023-35807-7
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