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  5. 3D Printing of Monolithic Proteinaceous Cantilevers Using Regenerated Silk Fibroin

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Article
en
2022

3D Printing of Monolithic Proteinaceous Cantilevers Using Regenerated Silk Fibroin

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en
2022
Vol 27 (7)
Vol. 27
DOI: 10.3390/molecules27072148

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David Kaplan
David Kaplan

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Xuan Mu
Constancio González‐Obeso
Zhiyu Xia
+5 more

Abstract

Silk fibroin, regenerated from Bombyx mori, has shown considerable promise as a printable, aqueous-based ink using a bioinspired salt-bath system in our previous work. Here, we further developed and characterized silk fibroin inks that exhibit concentration-dependent fluorescence spectra at the molecular level. These insights supported extrusion-based 3D printing using concentrated silk fibroin solutions as printing inks. 3D monolithic proteinaceous structures with high aspect ratios were successfully printed using these approaches, including cantilevers only supported at one end. This work provides further insight and broadens the utility of 3D printing with silk fibroin inks for the microfabrication of proteinaceous structures.

How to cite this publication

Xuan Mu, Constancio González‐Obeso, Zhiyu Xia, Jugal Kishore Sahoo, Gang Li, Peggy Cebe, Yu Shrike Zhang, David Kaplan (2022). 3D Printing of Monolithic Proteinaceous Cantilevers Using Regenerated Silk Fibroin. , 27(7), DOI: https://doi.org/10.3390/molecules27072148.

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Publication Details

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Article

Year

2022

Authors

8

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0

Total Files

0

Language

en

DOI

https://doi.org/10.3390/molecules27072148

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