In vitro antimicrobial activity of plant active components against Pseudomonas lundensis and Listeria monocytogenes

Author:

Hussein Khabat Noori12ORCID,Molnár Tímea3,Pinter Richard1,Toth Adrienn1,Ayari Emna1,Friedrich Laszlo1,Dalmadi Istvan1,Kiskó Gabriella3

Affiliation:

1. 1Department of Refrigeration and Livestock Products Technology, Faculty of Food Science, Szent István University, Ménesi út 43–45, H-1118, Budapest, Hungary

2. 2Department of Animal Production, College of Agriculture, University of Duhok, Zakho Street 38, 42001, Duhok, Kurdistan Region, Iraq

3. 3Department of Microbiology and Biotechnology, Faculty of Food Science, Szent István University, Somlói út 14–16, H-1118, Budapest, Hungary

Abstract

AbstractThis work aimed to study the antimicrobial activity of eight various components of plant origin on the growth of Pseudomonas lundensis and Listeria monocytogenes. Different in vitro methods were used: agar plate diffusion, micro atmosphere, agar hole diffusion, micro-dilution, and gradient-plate method. In the first agar plate assay, p-cymene and γ-terpinene did not inhibit the growth of the tested bacteria therefore they were not used in further experiments. Both α-pinene and limonene were only partially effective, but these were screened only for their partial inhibition. The other four components completely inhibited the growth of the tested bacteria. Using the agar-well diffusion method showed that carvacrol and thymol were found to be the most effective active components, thymol had minimum inhibitory concentration (MIC) at 1.563 mg/mL, however, in the case of carvacrol, MIC was 7.813 μL/mL. Additionally, eugenol and camphor show the same results but in higher concentrations. Gradient plate method was used to determine MIC values, in which it has been proved that carvacrol and thymol possess strong antimicrobial activity, no growth of tested bacteria was observed with carvacrol (100 μL/mL), while thymol exhibited MIC of 1.887 mg/mL against P. lundensis and 0.943 mg/mL needed to show complete inhibition of Listeria monocytogenes. Further experiments are needed to determine the optimum concentrations of the active components against P. lundensis and L. monocytogenes.

Funder

European Social Fund

Publisher

Akademiai Kiado Zrt.

Subject

Industrial and Manufacturing Engineering,Mechanical Engineering,Environmental Engineering

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