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Author Spotlight: Advancing Antibiotic Resistance Research Using an Efflux-Deficient Bacterial Strain and a Single-Copy Gene Expression System
Published on: January 5, 2024
Resistant mechanisms and molecular epidemiology of imipenem-resistant Acinetobacter baumannii
Shu-Zhen Xiao1, Hai-Qing Chu2, Li-Zhong Han1
1Department of Clinical Microbiology, Ruijin Hospital, Shanghai Jiaotong University School of Medicine, Shanghai 200025, P.R. China.
Abstract:
The aim of the study was to investigate the resistant mechanisms and homology of imipenem-resistant Acinetobacter baumannii (A. baumannii). A total of 46 non-duplicate imipenem‑resistant A. baumannii clinical isolates were collected from three tertiary hospitals between July, 2011 and June, 2012. The minimal inhibitory concentrations (MICs) of antimicrobial agents were determined using the agar dilution method. Phenylalanine‑arginine β-naphthylamide was used to detect the presence of the efflux pump-mediated resistant mechanism. Polymerase chain reaction was employed to amplify genes associated with drug resistance, including β‑lactamase genes, efflux pump genes and outer membrane protein gene CarO. A few amplicons were randomly selected and sequenced. Multilocus sequence analysis (MLST) was employed in typing A. baumanni. A. baumannii was resistant to imipenem, simultaneously showing resistance to several other antimicrobials. In addtition, 13 A. baumannii were found to mediate drug resistance through operation of the efflux pump. Of the various drug resistance genes tested, blaOXA‑51 was present in 46 isolates, blaOXA‑23 gene was present in 44 isolates and blaNDM gene was found in only one strain. Other drug resistant‑associated genes, including blaKPC, blaIMP, blaOXA-24, blaOXA‑58, blaSHV, blaGIM and blaVIM were not detected. Mutation of adeS and outer membrane protein gene CarO were found in a few of the imipenem‑resistant isolates. The MLST analysis revealed that all 46 clinical isolates were clustered into 11 genotypes and the most frequent genotype was ST208. In conclusion, β‑lactamase genes, genes involved in efflux pump and mutation of outer membrane protein encoding gene may be important in mediating imipenem resistance in A. baumannii. Of the 11 different genotypes, ST11 was shared by the majority of A. baumannii, which may be due to horizontal transfer of patients from hospitals.
Insights
Imipenem-resistant Acinetobacter baumannii (A. baumannii) often exhibits multiple drug resistance. Key resistance mechanisms include beta-lactamase genes (blaOXA-51, blaOXA-23) and efflux pumps, with ST208 being a common genotype.
Area of Science:
- Medical Microbiology
- Antimicrobial Resistance
- Genetics
Background:
- Acinetobacter baumannii (A. baumannii) is a significant opportunistic pathogen.
- Imipenem resistance in A. baumannii poses a major clinical challenge.
- Understanding resistance mechanisms is crucial for effective treatment strategies.
Purpose of the Study:
- To investigate the mechanisms of imipenem resistance in clinical isolates of A. baumannii.
- To determine the genetic relatedness and homology among imipenem-resistant A. baumannii strains.
- To identify specific drug resistance genes and mutations contributing to imipenem resistance.
Main Methods:
- Agar dilution method for determining minimal inhibitory concentrations (MICs) of antimicrobials.
- Detection of efflux pump activity using phenylalanine-arginine β-naphthylamide.
- Polymerase chain reaction (PCR) to amplify key resistance genes (e.g., blaOXA, blaNDM, CarO).
- Multilocus sequence analysis (MLST) for genotypic typing of A. baumannii isolates.
Main Results:
- All 46 A. baumannii isolates were resistant to imipenem and showed co-resistance to other antimicrobials.
- blaOXA-51 and blaOXA-23 genes were highly prevalent (46 and 44 isolates, respectively).
- Efflux pump-mediated resistance was observed in 13 isolates.
- MLST identified 11 distinct genotypes, with ST208 being the most frequent.
- Mutations in adeS and the outer membrane protein gene CarO were found in some isolates.
Conclusions:
- Beta-lactamase genes (blaOXA-51, blaOXA-23), efflux pump activity, and outer membrane protein gene mutations are significant contributors to imipenem resistance in A. baumannii.
- The prevalence of specific genotypes, such as ST208, suggests potential clonal spread within healthcare settings.
- Further research into these mechanisms can guide the development of targeted interventions against multidrug-resistant A. baumannii.
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