Engineering of crosslinked poly(isothiouronium methylstyrene) microparticles of narrow size distribution for antibacterial applications

Isothiouronium salts are well known for their biocidal activity; however, their environmental toxicity is problematic. The current manuscript describes the synthesis of the antibacterial vinylic monomer, isothiouronium methylstyrene (ITMS), as well as its dispersion co‐polymerization with the crossl...

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Veröffentlicht in:Polymers for advanced technologies 2017-02, Vol.28 (2), p.188-192
Hauptverfasser: Cohen, Sarit, Laitman, Inna, Lublin Tennenbaum, Tammy, Natan, Michal, Banin, Ehud, Margel, Shlomo
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Sprache:eng
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Zusammenfassung:Isothiouronium salts are well known for their biocidal activity; however, their environmental toxicity is problematic. The current manuscript describes the synthesis of the antibacterial vinylic monomer, isothiouronium methylstyrene (ITMS), as well as its dispersion co‐polymerization with the crosslinking monomer divinylbenzene to form micrometer‐sized crosslinked poly(isothiouronium methylstyrene) (PITMS) particles of narrow size distribution. The effect of crosslinking monomer, initiator, and stabilizer concentrations on the size and size distribution of the formed microparticles was also elucidated. The incorporation of the isothiouronium salts into microparticles significantly reduces their toxicity. The bactericidal activity of PITMS microspheres of 380 ± 40‐nm diameter was demonstrated against four common bacterial pathogens: Escherichia coli, Pseudomonas aeruginosa, Staphylococcus aureus, and Listeria innocua. The minimum bactericidal concentration of PITMS microparticles needed for total killing was found, and their potent antibacterial activity demonstrates the potential of these particles as new types of antibacterial additive for various industrial and biomedical materials. Copyright © 2016 John Wiley & Sons, Ltd.
ISSN:1042-7147
1099-1581
DOI:10.1002/pat.3873