Gelatin methacryloyl hydrogels for the localized delivery of cefazolin
Vigata, Margaux, O'Connell, Cathal D., Cometta, Silvia, Hutmacher, Dietmar W., Meinert, Christoph, & Bock, Nathalie (2021) Gelatin methacryloyl hydrogels for the localized delivery of cefazolin. Polymers, 13(22), Article number: 3960.
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Description
The tuneability of hydrogels renders them promising candidates for local drug delivery to prevent and treat local surgical site infection (SSI) while avoiding the systemic side-effects of intravenous antibiotic injections. Here, we present a newly developed gelatin methacryloyl (GelMA)-based hydrogel drug delivery system (GelMA-DDS) to locally deliver the broad-spectrum antibiotic cefazolin for SSI prophylaxis and treatment. Antibiotic doses from 3 µg to 90 µg were loaded in photocrosslinked GelMA hydrogel discs with 5 to 15% w/v polymer concentration and drug encapsulation efficiencies, mechanical properties, crosslinking and release kinetics, as well as bacterial growth inhibition were assessed. Our results demonstrate that all GelMA groups supported excellent drug encapsulation efficiencies of up to 99%. Mechanical properties of the GelMA-DDS were highly tuneable and unaffected by the loading of small to medium doses of cefazolin. The diffusive and the proteolytic in vitro drug delivery of all investigated cefazolin doses was characterized by a burst release, and the delivered cefazolin amount was directly proportional to the encapsulated dose. Accelerated enzymatic degradation of the GelMA-DDS followed zero-order kinetics and was dependent on both the cefazolin dose and GelMA concentration (3–13 h). Finally, we demonstrate that cefazolin delivered from GelMA induced a dose-dependent antibacterial efficacy against S. aureus, in both a broth and a diffusive assay. The cefazolin-loaded GelMA-DDS presented here provides a highly tuneable and easy-to-use local delivery system for the prophylaxis and treatment of SSI.
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ID Code: | 228453 | ||||||||
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Item Type: | Contribution to Journal (Journal Article) | ||||||||
Refereed: | Yes | ||||||||
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Additional Information: | Funding Information: Funding: D.W.H. is thankful for the financial support provided by the Australian Research Council (ARC) Training Centre for Cell and Tissue Engineering Technologies (IC190100026), the ARC Training Centre in Additive Biomanufacturing (IC160100026), and the ARC Training Centre for Multiscale 3D Imaging, Modelling and Manufacturing (IC180100008). N.B is thankful for support from JJ Richards & Sons via an In Vitro Excellence Research grant, Advance Queensland via an Advance Queensland Industry Research Fellowship (AQIRF066-2019RD2), and the ARC Training Centre for Multiscale 3D Imaging, Modelling and Manufacturing (IC180100008). | ||||||||
Measurements or Duration: | 24 pages | ||||||||
Keywords: | Cefazolin, Drug delivery, Gelatin methacryloyl, Localized antibiotic therapy, Surgery site infection | ||||||||
DOI: | 10.3390/polym13223960 | ||||||||
ISSN: | 2073-4360 | ||||||||
Pure ID: | 106017865 | ||||||||
Divisions: | Current > Research Centres > Centre for Behavioural Economics, Society & Technology Current > Research Centres > Centre for Biomedical Technologies Current > QUT Faculties and Divisions > Faculty of Business & Law Current > QUT Faculties and Divisions > Faculty of Engineering Current > Schools > School of Mechanical, Medical & Process Engineering Current > QUT Faculties and Divisions > Faculty of Health Current > Schools > School of Biomedical Sciences |
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Funding Information: | Funding: D.W.H. is thankful for the financial support provided by the Australian Research Council (ARC) Training Centre for Cell and Tissue Engineering Technologies (IC190100026), the ARC Training Centre in Additive Biomanufacturing (IC160100026), and the ARC Training Centre for Multiscale 3D Imaging, Modelling and Manufacturing (IC180100008). N.B is thankful for support from JJ Richards & Sons via an In Vitro Excellence Research grant, Advance Queensland via an Advance Queensland Industry Research Fellowship (AQIRF066-2019RD2), and the ARC Training Centre for Multiscale 3D Imaging, Modelling and Manufacturing (IC180100008). | ||||||||
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Copyright Owner: | © 2021 by the authors | ||||||||
Copyright Statement: | This work is covered by copyright. Unless the document is being made available under a Creative Commons Licence, you must assume that re-use is limited to personal use and that permission from the copyright owner must be obtained for all other uses. If the document is available under a Creative Commons License (or other specified license) then refer to the Licence for details of permitted re-use. It is a condition of access that users recognise and abide by the legal requirements associated with these rights. If you believe that this work infringes copyright please provide details by email to qut.copyright@qut.edu.au | ||||||||
Deposited On: | 22 Feb 2022 06:13 | ||||||||
Last Modified: | 22 Jul 2025 15:36 |
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