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Bioinspired and eco-friendly high efficacy cinnamaldehyde antibacterial surfaces†
Harrison J. Cox,Jing Li,Preety Saini,Joy R. Paterson,Gary J. Sharples,Jas Pal S. Badyal
Journal of Materials Chemistry B Pub Date : 03/19/2021 00:00:00 , DOI:10.1039/D0TB02379E
Abstract

Antimicrobial essential oils are incorporated into mussel-inspired and natural plant polyphenol coatings as part of a single-step fabrication process. Polydopamine–cinnamaldehyde, polyethyleneimine–cinnamaldehyde, and tannic acid–cinnamaldehyde coatings exhibit strong antibacterial activities against both Gram-negative Escherichia coli and Gram-positive Staphylococcus aureus (with the polydopamine- and tannic acid-based systems displaying log10 Reduction = 8). Cinnamaldehyde impregnation into porous non-woven polypropylene cloth, polytetrafluoroethylene membrane, and knitted cotton cloth also gives rise to high levels of antibacterial activity (log10 Reduction = 8). No loss in antibacterial efficacy is observed for non-woven polypropylene cloth impregnated with cinnamaldehyde over 17 recycle tests.

Graphical abstract: Bioinspired and eco-friendly high efficacy cinnamaldehyde antibacterial surfaces
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