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Future Nat Prod. 2019;5(1): 14-20.
  Abstract View: 200
  PDF Download: 142

Original article

Antibacterial activities and ciprofloxacin potentiation of Melissa officinalis extracts against some gram negative pathogenic bacteria

Azizollah Ebrahimi 1*, Maryam Shahrokhi 2, Saied Habibiuan 3, Sharareh Lotfalian 1

1 Department of Pathobiology, School of Veterinary Science, Shahrekord University, P. O. Box: 115, Shahrekord, Iran
2 Msc student of Bacteriology, Dept. of Pathobiology,Veterinary College, Shahrekord University, Iran
3 Dept. of Pharmacology,Veterinary College, Shahrekord University, Iran
*Corresponding Author: Azizollah Ebrahimi, Department of Pathobiology, School of Veterinary Science, Shahrekord University, Shahrekord, Iran. Phone: +98-3832324427, Email: A_kahrizsangi@yahoo.com

Abstract

Background and aims: In bacteria, using inhibitors of efflux pumps (EPIs) is one of several strategies to combat with bacterial resistance. It is well documented that most medicinal plants especially those with antimicrobial properties are composed of elements (EPIs) that disturb the efflux pumps of bacteria. The current work was designed to evaluate antibacterial activities of ethanol and chlorophorm extracts of Melissa officinalis along with the synergistic effects of the extracts with ciprofloxacin against some gram-negative pathogenic bacteria. We also examined the inhibitory effects of the extracts on efflux pumps.

Methods: Minimum inhibitory concentrations (MICs) of the extracts alone or in association with ciprofloxacin or phenylalanine arginine β- naphtylamide (PAβN) were determined using broth micro dilution method. Effects of the extracts on efflux pumps of the examined bacteria were detected by using ethidium bromide in well diffusion assays.

Results: The extracts from M. officinalis showed antibacterial activities against all examined bacteria in a range of 3125 to 25000 μg/mL as determined by MIC determination. The extracts from M. officinalis showed synergistic effects with ciprofloxacin on Salmonella enteritidis and Escherichia coli. In Pseudomonas aeruginosa and Acinetobacter baumannii, PAβN had no effect on MIC of ciprofloxacin but the association of extracts decreased it. In S. enertidis and E Coli, both extracts of M. officinalis increased the amount of ethidium bromide accumulation (i.e. reduced efflux).

Conclusion: The overall results show that associations of fluoroquinolones with extracts of M. officinalis may potentiate the antibacterial effects of fluoroquinolones.

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Submitted: 20 Oct 2018
Accepted: 02 Jan 2019
ePublished: 30 Jun 2019
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