Javascript must be enabled to continue!
Phenotypic Fosfomycin Susceptibility and Detection of Plasmid-Mediated Resistance Genes in Clinical Uropathogenic Escherichia coli Isolates
View through CrossRef
Urinary tract infections (UTIs), predominantly caused by Escherichia coli, constitute a major global health issue due to the escalating antimicrobial resistance. This study was designed to assess the in vitro susceptibility of fosfomycin among clinical uropathogenic Escherichia coli (UPEC) isolates and to detect plasmid-mediated fosA3 and fosC2 genes in those exhibiting fosfomycin resistance. A total of 158 non-duplicated UPEC strains were collected from urine samples of patients with UTIs. Antimicrobial susceptibility of these isolates was evaluated. Phenotypic detection of extended-spectrum β-lactamases (ESBL) and carbapenemase producers in UPEC was assessed. Identification of plasmid mediated fosA3 and fosC2 genes in those exhibiting fosfomycin resistance was carried out by PCR. A total of 72% of the isolates demonstrated multidrug resistance (MDR). Extensively drug-resistant (XDR) isolates represented 15%, while PDR isolates were rare (0.6%, 1/158). ESBLs were detected in 40% of the isolates, and 31% exhibited carbapenemase production. Fosfomycin resistance was detected in 9.5% of UPEC isolates, with the fosA3 gene identified in 33% of these resistant strains, whereas fosC2 gene was not identified in any isolate. Fosfomycin demonstrated considerable in vitro activity against carbapenemase-producing, ESBL-producing, and MDR isolates with susceptibility rates of 78%, 84%, and 97%, respectively. Fosfomycin resistance among UPEC isolates is emerging but still at a relatively low level of resistance. Continuous surveillance and antimicrobial stewardship are essential to preserve fosfomycin efficacy.
Title: Phenotypic Fosfomycin Susceptibility and Detection of Plasmid-Mediated Resistance Genes in Clinical Uropathogenic Escherichia coli Isolates
Description:
Urinary tract infections (UTIs), predominantly caused by Escherichia coli, constitute a major global health issue due to the escalating antimicrobial resistance.
This study was designed to assess the in vitro susceptibility of fosfomycin among clinical uropathogenic Escherichia coli (UPEC) isolates and to detect plasmid-mediated fosA3 and fosC2 genes in those exhibiting fosfomycin resistance.
A total of 158 non-duplicated UPEC strains were collected from urine samples of patients with UTIs.
Antimicrobial susceptibility of these isolates was evaluated.
Phenotypic detection of extended-spectrum β-lactamases (ESBL) and carbapenemase producers in UPEC was assessed.
Identification of plasmid mediated fosA3 and fosC2 genes in those exhibiting fosfomycin resistance was carried out by PCR.
A total of 72% of the isolates demonstrated multidrug resistance (MDR).
Extensively drug-resistant (XDR) isolates represented 15%, while PDR isolates were rare (0.
6%, 1/158).
ESBLs were detected in 40% of the isolates, and 31% exhibited carbapenemase production.
Fosfomycin resistance was detected in 9.
5% of UPEC isolates, with the fosA3 gene identified in 33% of these resistant strains, whereas fosC2 gene was not identified in any isolate.
Fosfomycin demonstrated considerable in vitro activity against carbapenemase-producing, ESBL-producing, and MDR isolates with susceptibility rates of 78%, 84%, and 97%, respectively.
Fosfomycin resistance among UPEC isolates is emerging but still at a relatively low level of resistance.
Continuous surveillance and antimicrobial stewardship are essential to preserve fosfomycin efficacy.
Related Results
Evolution of Antimicrobial Resistance in Community vs. Hospital-Acquired Infections
Evolution of Antimicrobial Resistance in Community vs. Hospital-Acquired Infections
Abstract
Introduction
Hospitals are high-risk environments for infections. Despite the global recognition of these pathogens, few studies compare microorganisms from community-acqu...
611. Fosfomycin Resistance of Multidrug-Resistant Escherichia coli and Mechanisms of Fosfomycin Resistance
611. Fosfomycin Resistance of Multidrug-Resistant Escherichia coli and Mechanisms of Fosfomycin Resistance
Abstract
Background
Fosfomycin is one of the antibiotics that may be a candidate for the next-generation antimicrobial agents ag...
Phenotypic and Molecular Characterization of the blaTEM Gene in Extended-Spectrum Beta-Lactamase-Producing Klebsiella pneumoniae
Phenotypic and Molecular Characterization of the blaTEM Gene in Extended-Spectrum Beta-Lactamase-Producing Klebsiella pneumoniae
Abstract
Introduction
There has been a notable rise in antibiotic resistance among enterobacteria. This issue is primarily attributed to the emergence of extended-spectrum beta-lac...
Challenging Management of Postoperative Empyema: A Case Report with Literature Review
Challenging Management of Postoperative Empyema: A Case Report with Literature Review
Abstract
Introduction: Pleural empyema is the collection of pus within the pleural cavity, typically arising as a complication of pneumonia, chest trauma, thoracic surgery, or bact...
Molecular Characterization of Plasmid-Mediated Non-O157 Verotoxigenic Escherichia coli Isolated from Infants and Children with Diarrhea
Molecular Characterization of Plasmid-Mediated Non-O157 Verotoxigenic Escherichia coli Isolated from Infants and Children with Diarrhea
A significant increase in the incidence of non-O157 verotoxigenic Escherichia coli (VTEC) infections have become a serious health issues, and this situation is worsening due to the...
A genome wide analysis ofEscherichia coliresponses to fosfomycin using TraDIS-Xpress reveals novel roles for phosphonate and phosphate transport systems
A genome wide analysis ofEscherichia coliresponses to fosfomycin using TraDIS-Xpress reveals novel roles for phosphonate and phosphate transport systems
AbstractFosfomycin is an antibiotic which has seen a revival in use due to its unique mechanism of action and resulting efficacy against isolates resistant to many other antibiotic...
Mapping Antimicrobial Resistance in Escherichia coli and Klebsiella pneumoniae from Complicated Urinary Tract Infections in Oman: Phenotypic and Genotypic Insights
Mapping Antimicrobial Resistance in Escherichia coli and Klebsiella pneumoniae from Complicated Urinary Tract Infections in Oman: Phenotypic and Genotypic Insights
Background: Mapping the local etiology and susceptibility of common pathogens causing complicated urinary tract infection (cUTI) is important for promoting evidence-based antimicro...
Multidrug resistance, biofilm formation, and virulence genes of Escherichia coli from backyard poultry farms
Multidrug resistance, biofilm formation, and virulence genes of Escherichia coli from backyard poultry farms
Background and Aim: Backyard chicken flocks have traditionally been regarded as an essential food source in developed countries; however, they may act as reservoirs and spread vari...

