The Natural Antimicrobial Carvacrol Inhibits Campylobacter jejuni Motility and Infection of Epithelial Cells

Publication date

2012

Authors

van Alphen, L.ISNI 000000039120895X
Burt, S.A.ORCID 0000-0001-8363-6255ISNI 0000000391998701
Veenendaal, A.K.J.ISNI 0000000394114967
Bleumink-Pluym, N. M C
van Putten, JosORCID 0000-0002-4126-8172ISNI 000000038907215X

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Abstract

BACKGROUND Natural compounds with anti-microbial properties are attractive reagents to reduce the use of conventional antibiotics. Carvacrol, the main constituent of oregano oil, inhibits the growth of a variety of bacterial foodborne pathogens. As concentrations of carvacrol may vary in vivo or when used in animal feed, we here investigated the effect of subinhibitory concentrations of the compound on major virulence traits of the principal bacterial foodborne pathogen Campylobacter jejuni. METHODS/PRINCIPAL FINDINGS Motility assays revealed that subinhibitory concentrations of carvacrol inhibited the motility of C. jejuni without affecting bacterial growth. Immunoblotting and electron microscopy showed that carvacrol-treated C. jejuni still expressed flagella. The loss of motility was not caused by reduced intracellular ATP levels. In vitro infection assays demonstrated that subinhibitory concentrations of carvacrol also abolished C. jejuni invasion of human epithelial cells. Bacterial uptake of invasive Escherichia coli was not blocked by carvacrol. Exposure of C. jejuni to carvacrol prior to infection also inhibited cellular infection, indicating that the inhibition of invasion was likely caused by an effect on the bacteria rather than inhibition of epithelial cell function. CONCLUSIONS/SIGNIFICANCE Bacterial motility and invasion of eukaryotic cells are considered key steps in C. jejuni infection. Our results indicate that subinhibitory concentrations of carvacrol effectively block these virulence traits by interfering with flagella function without disturbing intracellular ATP levels. These results broaden the spectrum of anti-microbial activity of carvacrol and support the potential of the compound for use in novel infection prevention strategies.

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van Alphen, L, Burt, S A, Veenendaal, A K J, Bleumink-Pluym, N & van Putten, J P M 2012, 'The Natural Antimicrobial Carvacrol Inhibits Campylobacter jejuni Motility and Infection of Epithelial Cells', PLoS One, vol. 7, no. 9, pp. e45343. https://doi.org/10.1371/journal.pone.0045343