Literature DB >> 24799849

Evaluation of Zataria MultiFlora Boiss and Carum copticum antibacterial activity on IMP-type metallo-beta-lactamase-producing Pseudomonas aeruginosa.

F Fallah1, A Taherpour2, R S Borhan3, A Hashemi3, M Habibi3, R Sajadi Nia4.   

Abstract

Carbapenem resistance due to acquired metallo-beta-lactamases (MBLs) is considered to be more serious than other resistance mechanisms. The aim of this study was to evaluate the antibacterial activity of Zataria multiflora Boiss and Carum copticum plants on IMP-producing P.aeruginosa strains. This experimental study was carried out on hospitalized burn patients during 2011 and 2012. Antibiotics and extracts susceptibility tests were performed by disc diffusion and broth microdilution methods. MBL detection was performed by Combination Disk Diffusion Test (CDDT). The bla(VIM) and bla(IMP) genes were detected by PCR and sequencing methods. Using Combination Disk Diffusion test method, it was found that among 83 imipenem resistant P.aeruginosa strains, 48 (57.9%) were MBL producers. PCR and sequencing methods proved that these isolates were positive for blaIMP-1 genes, whereas none were positive for bla(VIM) genes. The mortality rate of hospitalized patients with MBL-producing Pseudomonas infection was 4/48 (8.3%). It was shown that Zataria multiflora and Carum copticum extracts had a high antibacterial effect on regular and IMP-producing P. aeruginosa strains in 6.25 mg/ml concentration. The incidence of MBL-producing P. aeruginosa in burn patients is very high. In our study, all MBL-producing isolates carry the blaIMP-1 gene. Therefore, detection of MBL-producing isolates is of great importance in identifying drug resistance patterns in P. aeruginosa, and in prevention and control of infections. In this study, it was shown that extracts of Z. multiflora and C. copticum have high antibacterial effects on ß-lactamase producing P. aeruginosa strains.

Entities:  

Keywords:  Carum copticum; Metallo-ß-lactamases; P. aeruginosa; Zataria multiflora Boiss

Year:  2013        PMID: 24799849      PMCID: PMC3978591     

Source DB:  PubMed          Journal:  Ann Burns Fire Disasters        ISSN: 1592-9558


  29 in total

1.  IMP-29, a novel IMP-type metallo-β-lactamase in Pseudomonas aeruginosa.

Authors:  Katy Jeannot; Laurent Poirel; Marjorie Robert-Nicoud; Pascal Cholley; Patrice Nordmann; Patrick Plésiat
Journal:  Antimicrob Agents Chemother       Date:  2012-01-30       Impact factor: 5.191

2.  VIM-2 metallo-β-lactamase-producing Pseudomonas aeruginosa causing an outbreak in South Africa.

Authors:  Rachael Kiera Jacobson; Nadia Minenza; Mark Nicol; Colleen Bamford
Journal:  J Antimicrob Chemother       Date:  2012-03-28       Impact factor: 5.790

3.  Bloodstream infections with metallo-beta-lactamase-producing Pseudomonas aeruginosa: epidemiology, microbiology, and clinical outcomes.

Authors:  Alexandre R Marra; Carlos Alberto P Pereira; Ana Cristina Gales; Liana C Menezes; Ruy Guilherme R Cal; José Marconi A de Souza; Michael B Edmond; Cynthia Faro; Sérgio B Wey
Journal:  Antimicrob Agents Chemother       Date:  2006-01       Impact factor: 5.191

4.  In vitro antibacterial potential of Eugenia jambolana seed extracts against multidrug-resistant human bacterial pathogens.

Authors:  Anwesa Bag; Subir Kumar Bhattacharyya; Nishith Kumar Pal; Rabi Ranjan Chattopadhyay
Journal:  Microbiol Res       Date:  2012-03-22       Impact factor: 5.415

5.  First report of a Pseudomonas aeruginosa isolate coharboring KPC and VIM carbapenemases.

Authors:  A Correa; M C Montealegre; M F Mojica; J J Maya; L J Rojas; E P De La Cadena; S J Ruiz; M Recalde; F Rosso; J P Quinn; M V Villegas
Journal:  Antimicrob Agents Chemother       Date:  2012-07-23       Impact factor: 5.191

6.  Detection of metallo-β-lactamase-encoding genes among clinical isolates of Pseudomonas aeruginosa in northwest of Iran.

Authors:  Saber Yousefi; Safar Farajnia; Mohammd Reza Nahaei; Mohammad Taghi Akhi; Reza Ghotaslou; Mohammad Hossein Soroush; Behrooz Naghili; Nima Hosseini Jazani
Journal:  Diagn Microbiol Infect Dis       Date:  2010-09-16       Impact factor: 2.803

7.  Diversity of beta-lactamases produced by ceftazidime-resistant Pseudomonas aeruginosa isolates causing bloodstream infections in Brazil.

Authors:  Renata C Picão; Laurent Poirel; Ana C Gales; Patrice Nordmann
Journal:  Antimicrob Agents Chemother       Date:  2009-07-13       Impact factor: 5.191

8.  Pomegranate pericarp extract enhances the antibacterial activity of ciprofloxacin against extended-spectrum β-lactamase (ESBL) and metallo-β-lactamase (MBL) producing Gram-negative bacilli.

Authors:  Diganta Dey; Sukalyani Debnath; Sudipta Hazra; Subhalakshmi Ghosh; Ratnamala Ray; Banasri Hazra
Journal:  Food Chem Toxicol       Date:  2012-09-11       Impact factor: 6.023

9.  Prevalence of metallo-β-lactamase producing Pseudomonas aeruginosa and Acinetobacter species in intensive care areas in a tertiary care hospital.

Authors:  Anuradha S De; Simit H Kumar; Sujata M Baveja
Journal:  Indian J Crit Care Med       Date:  2010-10

10.  Pseudomonas aeruginosa: resistance to the max.

Authors:  Keith Poole
Journal:  Front Microbiol       Date:  2011-04-05       Impact factor: 5.640

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  3 in total

1.  Prevalence of bla NDM, bla PER, bla VEB, bla IMP, and bla VIM Genes among Acinetobacter baumannii Isolated from Two Hospitals of Tehran, Iran.

Authors:  Fatemeh Fallah; Maryam Noori; Ali Hashemi; Hossein Goudarzi; Abdollah Karimi; Soroor Erfanimanesh; Shadi Alimehr
Journal:  Scientifica (Cairo)       Date:  2014-07-15

2.  Detection of β -Lactamases and Outer Membrane Porins among Klebsiella pneumoniae Strains Isolated in Iran.

Authors:  Ali Hashemi; Fatemeh Fallah; Soroor Erfanimanesh; Parastu Hamedani; Shadi Alimehr; Hossein Goudarzi
Journal:  Scientifica (Cairo)       Date:  2014-08-03

Review 3.  A Systematic Review of the Effects of Satureja Khuzestanica Jamzad and Zataria Multiflora Boiss against Pseudomonas Aeruginosa.

Authors:  Azad Khaledi; Maryam Meskini
Journal:  Iran J Med Sci       Date:  2020-03
  3 in total

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