Tetracycline improved the efficiency of other antimicrobials against Gram-negative multidrug-resistant bacteria

Summary: Treatment of infectious diseases with antimicrobials constituted a great achievement in the history of medicine. Unfortunately, the emergence of resistant strains of bacteria to all classes of antimicrobials limited their efficacy. The present study was aimed at evaluating the effect of com...

Full description

Bibliographic Details
Main Authors: Isabelle K. Mawabo, Jaurès A.K. Noumedem, Jules R. Kuiate, Victor Kuete
Format: Article
Language:English
Published: Elsevier 2015-05-01
Series:Journal of Infection and Public Health
Online Access:http://www.sciencedirect.com/science/article/pii/S1876034114001506
id doaj-932964b33f2d44dfb812cd8b59fed141
record_format Article
spelling doaj-932964b33f2d44dfb812cd8b59fed1412020-11-24T23:12:59ZengElsevierJournal of Infection and Public Health1876-03412015-05-0183226233Tetracycline improved the efficiency of other antimicrobials against Gram-negative multidrug-resistant bacteriaIsabelle K. Mawabo0Jaurès A.K. Noumedem1Jules R. Kuiate2Victor Kuete3Department of Biochemistry, Faculty of Science, University of Dschang, CameroonDepartment of Biochemistry, Faculty of Science, University of Dschang, CameroonDepartment of Biochemistry, Faculty of Science, University of Dschang, CameroonCorresponding author. Tel.: +237 75468927.; Department of Biochemistry, Faculty of Science, University of Dschang, CameroonSummary: Treatment of infectious diseases with antimicrobials constituted a great achievement in the history of medicine. Unfortunately, the emergence of resistant strains of bacteria to all classes of antimicrobials limited their efficacy. The present study was aimed at evaluating the effect of combinations of antibiotics on multi-drug resistant Gram-negative (MDRGN) bacteria.A liquid micro-broth dilution method was used to evaluate the antibacterial activity of 10 different classes of antimicrobials on 20 bacterial strains belonging to six different species. The antimicrobials were associated with phenylalanine β-naphthylamide (PAβN), an efflux pump inhibitor, and with other antimicrobials at their sub-inhibitory concentrations. The effectiveness of each combination was monitored using the minimal inhibitory concentration (MIC) and the fractional inhibitory concentration (FIC).Most of the antimicrobials tested showed low antibacterial activity with a MIC value of 128 mg/L on a majority of the bacterial strains, justifying their multidrug-resistant (MDR) profile. Synergistic effects were mostly observed (FIC ≤ 0.5) when ampicillin (AMP), cloxacillin (CLX), erythromycin (ERY), chloramphenicol (CHL), kanamycin (KAN) and streptomycin (STR) were combined with tetracycline (TET) at the sub-inhibitory concentration of MIC/5 or MIC/10.The results of the present work suggest that the association of several antimicrobials with TET could improve the fight against MDRGN bacterial species. Keywords: Antimicrobials, Gram-negative, Multi-drug-resistant bacteria, Synergy, Tetracyclinehttp://www.sciencedirect.com/science/article/pii/S1876034114001506
collection DOAJ
language English
format Article
sources DOAJ
author Isabelle K. Mawabo
Jaurès A.K. Noumedem
Jules R. Kuiate
Victor Kuete
spellingShingle Isabelle K. Mawabo
Jaurès A.K. Noumedem
Jules R. Kuiate
Victor Kuete
Tetracycline improved the efficiency of other antimicrobials against Gram-negative multidrug-resistant bacteria
Journal of Infection and Public Health
author_facet Isabelle K. Mawabo
Jaurès A.K. Noumedem
Jules R. Kuiate
Victor Kuete
author_sort Isabelle K. Mawabo
title Tetracycline improved the efficiency of other antimicrobials against Gram-negative multidrug-resistant bacteria
title_short Tetracycline improved the efficiency of other antimicrobials against Gram-negative multidrug-resistant bacteria
title_full Tetracycline improved the efficiency of other antimicrobials against Gram-negative multidrug-resistant bacteria
title_fullStr Tetracycline improved the efficiency of other antimicrobials against Gram-negative multidrug-resistant bacteria
title_full_unstemmed Tetracycline improved the efficiency of other antimicrobials against Gram-negative multidrug-resistant bacteria
title_sort tetracycline improved the efficiency of other antimicrobials against gram-negative multidrug-resistant bacteria
publisher Elsevier
series Journal of Infection and Public Health
issn 1876-0341
publishDate 2015-05-01
description Summary: Treatment of infectious diseases with antimicrobials constituted a great achievement in the history of medicine. Unfortunately, the emergence of resistant strains of bacteria to all classes of antimicrobials limited their efficacy. The present study was aimed at evaluating the effect of combinations of antibiotics on multi-drug resistant Gram-negative (MDRGN) bacteria.A liquid micro-broth dilution method was used to evaluate the antibacterial activity of 10 different classes of antimicrobials on 20 bacterial strains belonging to six different species. The antimicrobials were associated with phenylalanine β-naphthylamide (PAβN), an efflux pump inhibitor, and with other antimicrobials at their sub-inhibitory concentrations. The effectiveness of each combination was monitored using the minimal inhibitory concentration (MIC) and the fractional inhibitory concentration (FIC).Most of the antimicrobials tested showed low antibacterial activity with a MIC value of 128 mg/L on a majority of the bacterial strains, justifying their multidrug-resistant (MDR) profile. Synergistic effects were mostly observed (FIC ≤ 0.5) when ampicillin (AMP), cloxacillin (CLX), erythromycin (ERY), chloramphenicol (CHL), kanamycin (KAN) and streptomycin (STR) were combined with tetracycline (TET) at the sub-inhibitory concentration of MIC/5 or MIC/10.The results of the present work suggest that the association of several antimicrobials with TET could improve the fight against MDRGN bacterial species. Keywords: Antimicrobials, Gram-negative, Multi-drug-resistant bacteria, Synergy, Tetracycline
url http://www.sciencedirect.com/science/article/pii/S1876034114001506
work_keys_str_mv AT isabellekmawabo tetracyclineimprovedtheefficiencyofotherantimicrobialsagainstgramnegativemultidrugresistantbacteria
AT jauresaknoumedem tetracyclineimprovedtheefficiencyofotherantimicrobialsagainstgramnegativemultidrugresistantbacteria
AT julesrkuiate tetracyclineimprovedtheefficiencyofotherantimicrobialsagainstgramnegativemultidrugresistantbacteria
AT victorkuete tetracyclineimprovedtheefficiencyofotherantimicrobialsagainstgramnegativemultidrugresistantbacteria
_version_ 1725599764317208576