Issue 19, 2024

3D printable gelatin/nisin biomaterial inks for antimicrobial tissue engineering applications

Abstract

Modern regenerative medicine approaches can rely on the fabrication of personalised medical devices and implants; however, many of these can fail due to infections, requiring antibiotics and revision surgeries. Given the rise in multidrug resistant bacteria, developing implants with antimicrobial activity without the use of traditional antibiotics is crucial for successful implant integration and improving patient outcomes. 3D printed gelatin-based implants have a broad range of applications in regenerative medicine due to their biocompatibility, ease of modification and degradability. In this paper, we report on the development of gelatin biomaterial inks loaded with the antimicrobial peptide, nisin, for extrusion-based 3D printing to produce scaffolds with controlled porosity, high shape fidelity, and structural stability. Rheological properties were comprehensively studied to develop inks that had shear thinning behaviour and viscoelastic properties to ensure optimal printability and extrudability, and enable precise deposition and structural integrity during 3D printing. The 3D printed scaffolds fabricated from the gelatin/nisin inks demonstrated excellent antimicrobial efficacy (complete kill) against Gram positive bacteria methicillin-resistant Staphylococcus aureus (MRSA). Overall, this ink's high printability and antimicrobial efficacy with the model antimicrobial peptide, nisin, offers the potential to develop customisable regenerative medicine implants that can effectively combat infection without contributing to the development of multidrug resistant bacteria.

Graphical abstract: 3D printable gelatin/nisin biomaterial inks for antimicrobial tissue engineering applications

Supplementary files

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Article information

Article type
Paper
Submitted
28 May 2024
Accepted
23 Aug 2024
First published
10 Sep 2024
This article is Open Access
Creative Commons BY license

Mater. Adv., 2024,5, 7729-7746

3D printable gelatin/nisin biomaterial inks for antimicrobial tissue engineering applications

M. Dallos Ortega, J. Aveyard, A. Ciupa, R. J. Poole, D. Whetnall, J. G. Behnsen and R. A. D’Sa, Mater. Adv., 2024, 5, 7729 DOI: 10.1039/D4MA00544A

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