Literature DB >> 24798291

Structural changes and differentially expressed genes in Pseudomonas aeruginosa exposed to meropenem-ciprofloxacin combination.

Vera Lúcia Dias Siqueira1, Rosilene Fressatti Cardoso2, Katiany Rizzieri Caleffi-Ferracioli2, Regiane Bertin de Lima Scodro2, Maria Aparecida Fernandez3, Adriana Fiorini2, Tania Ueda-Nakamura4, Benedito Prado Dias-Filho4, Celso Vataru Nakamura5.   

Abstract

The effect of a meropenem-ciprofloxacin combination (MCC) on the susceptibility of multidrug-resistant (MDR) Pseudomonas aeruginosa (MRPA) clinical isolates was determined using checkerboard and time-kill curve techniques. Structural changes and differential gene expression that resulted from the synergistic action of the MCC against one of the P. aeruginosa isolates (1071-MRPA]) were evaluated using electron microscopy and representational difference analysis (RDA), respectively. The differentially expressed, SOS response-associated, and resistance-associated genes in 1071-MRPA exposed to meropenem, ciprofloxacin, and the MCC were monitored by quantitative PCR. The MCC was synergistic against 25% and 40.6% of MDR P. aeruginosa isolates as shown by the checkerboard and time-kill curves, respectively. The morphological and structural changes that resulted from the synergistic action of the MCC against 1071-MRPA were a summation of the effects observed with each antimicrobial alone. One exception included outer membrane vesicles, which were seen in a greater amount upon ciprofloxacin exposure but were significantly inhibited upon MCC exposure. Cell wall- and DNA repair-associated genes were differentially expressed in 1071-MRPA exposed to meropenem, ciprofloxacin, and the MCC. However, some of the RDA-detected, resistance-associated, and SOS response-associated genes were expressed at significantly lower levels in 1071-MRPA exposed to the MCC. The MCC may be an alternative for the treatment of MDR P. aeruginosa. The effect of this antimicrobial combination may be not only the result of a summation of the effects of meropenem and ciprofloxacin but also a result of differential action that likely inhibits protective mechanisms in the bacteria.
Copyright © 2014, American Society for Microbiology. All Rights Reserved.

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Year:  2014        PMID: 24798291      PMCID: PMC4068605          DOI: 10.1128/AAC.02584-13

Source DB:  PubMed          Journal:  Antimicrob Agents Chemother        ISSN: 0066-4804            Impact factor:   5.191


  51 in total

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Journal:  Antimicrob Agents Chemother       Date:  1996-03       Impact factor: 5.191

5.  Structure of serine acetyltransferase in complexes with CoA and its cysteine feedback inhibitor.

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Journal:  J Bacteriol       Date:  2012-11-02       Impact factor: 3.490

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Authors:  Ali A El Solh; Ahmad Alhajhusain
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10.  Evidence for induction of integron-based antibiotic resistance by the SOS response in a clinical setting.

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Journal:  PLoS Pathog       Date:  2012-06-14       Impact factor: 6.823

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  6 in total

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2.  Antibiotic-Mediated Modulations of Outer Membrane Vesicles in Enterohemorrhagic Escherichia coli O104:H4 and O157:H7.

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Journal:  Antimicrob Agents Chemother       Date:  2017-08-24       Impact factor: 5.191

3.  Meropenem Combined with Ciprofloxacin Combats Hypermutable Pseudomonas aeruginosa from Respiratory Infections of Cystic Fibrosis Patients.

Authors:  Vanessa E Rees; Rajbharan Yadav; Kate E Rogers; Jürgen B Bulitta; Veronika Wirth; Antonio Oliver; John D Boyce; Anton Y Peleg; Roger L Nation; Cornelia B Landersdorfer
Journal:  Antimicrob Agents Chemother       Date:  2018-10-24       Impact factor: 5.191

4.  Isolation and immunogenicity of extracted outer membrane vesicles from Pseudomonas aeruginosa under antibiotics treatment conditions.

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Review 5.  Research Progress on Bacterial Membrane Vesicles and Antibiotic Resistance.

Authors:  Xiaofei Liu; Jinyang Xiao; Shuming Wang; Jinxia Zhou; Jiale Qin; Zhibo Jia; Yanfeng Wang; Zhigang Wang; Yongmin Zhang; Huifang Hao
Journal:  Int J Mol Sci       Date:  2022-09-30       Impact factor: 6.208

6.  Transcriptomic determinants of the response of ST-111 Pseudomonas aeruginosa AG1 to ciprofloxacin identified by a top-down systems biology approach.

Authors:  José Arturo Molina-Mora; Diana Chinchilla-Montero; Maribel Chavarría-Azofeifa; Alejandro J Ulloa-Morales; Rebeca Campos-Sánchez; Rodrigo Mora-Rodríguez; Leming Shi; Fernando García
Journal:  Sci Rep       Date:  2020-08-13       Impact factor: 4.379

  6 in total

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