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Plant Secondary Metabolite-Derived Polymers: A Potential Approach to Develop Antimicrobial Films
Ahmed Al-Jumaili1,2, Avishek Kumar3, Kateryna Bazaka4,5
1Electronics Materials Lab, College of Science and Engineering, James Cook University, Townsville, QLD 4811, Australia. Ahmed.Aljumaili@my.jcu.edu.au.
Abstract:
The persistent issue of bacterial and fungal colonization of artificial implantable materials and the decreasing efficacy of conventional systemic antibiotics used to treat implant-associated infections has led to the development of a wide range of antifouling and antibacterial strategies. This article reviews one such strategy where inherently biologically active renewable resources, i.e., plant secondary metabolites (PSMs) and their naturally occurring combinations (i.e., essential oils) are used for surface functionalization and synthesis of polymer thin films. With a distinct mode of antibacterial activity, broad spectrum of action, and diversity of available chemistries, plant secondary metabolites present an attractive alternative to conventional antibiotics. However, their conversion from liquid to solid phase without a significant loss of activity is not trivial. Using selected examples, this article shows how plasma techniques provide a sufficiently flexible and chemically reactive environment to enable the synthesis of biologically-active polymer coatings from volatile renewable resources.
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