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Isolation and Identification of Waterborne Antibiotic-Resistant Bacteria and Molecular Characterization of their Antibiotic Resistance Genes
Published on: March 3, 2023
Molecular characterization of Enterobacter aerogenes isolated from urinary tract infections in Iran
Shima Shantiae1, Elahe Tajbakhsh1, Hassan Momtaz1
1Department of Microbiology, Faculty of Basic Sciences, Shahrekord Branch, Islamic Azad University, Shahrekord, Iran.
Abstract:
The prevalence of multidrug-resistant Enterobacter aerogenes strains in UTIs is increasing. Therefore, the purpose of this study was to examine the mechanisms of resistance in Enterobacter aerogenes strains isolated from the urinary tract of infected patients. To achieve this goal, 786 urine samples from Shahrekord, Iran, were collected from June 2019 to February 2020. After isolating and identifying E. aerogenes samples, antibiotic susceptibility testing was done on the strains using Kirby-Bauer's disk diffusion method. The biofilm formation assays were performed to study the link between antibiotic resistance and biofilm formation and virulence genes. As a result, amongst the 786 urine samples, 50 strains were identified as E. aerogenes. The lowest rate of resistance was observed with imipenem (30%). This study also reports that all the strains of E. aerogenes are biofilm producers, with 50% of isolates producing a large amount, 30% a moderate amount, and 20% a small amount of biofilm. 42% were identified in the phenotypic study of ESBLs. In the PCR test, (64%) produced broad-spectrum beta-lactamases. Prevalence of qnrC, qnrB, qnrA, tetA, tet B, acc(3)IIa, acc(2)IIa, ant(2)Ia and Sul1 in strong producing isolates reported 100%, 80.95%,% 58.14, 87.5%, 81.58%, 86.67%, 82.14, 81.48% and 90% respectively. In the statistical analysis based on the chi-square test, a statistically significant relationship was reported between qnrA, qnrB, tetA, tetB, Sul1, ant(2)Ia, ant(3)I, aac(3)II, and biofilm formation. Resistance to cephalothin, ceftriaxone, cefotaxime and ceftazidime were reported 40%, 34%, 30% and 30%, respectively. Out of 50 Enterobacter aerogenes, 32 isolates (64%) were identified in the phenotypic study of ESBLS, prevalence of blaCTX-M, blaTEM and blaSHV reported 30%, 20% and 14% respectively. There is a significant relationship between resistance to ceftriaxone and blaCTX-M. Prevalence of csgA, ybtS, markD, rmpA, csgD and fimH in strong biofilm formation isolates reported 84%, 83.33%, 80%, 80%, 80% and 66% respectively. The chi-square test showed a statistically significant relationship between biofilm production and resistance genes fimH, csgA, csgD, ybtS, and mrkD. The findings of this study indicate that the ability to produce biofilms is associated with the increase of antibiotic resistance and virulence genes. These agents enable bacteria to produce biofilms that ultimately lead to colonization and bacterial survival in the body.
Insights
Multidrug-resistant Enterobacter aerogenes in UTIs are increasing. This study found that biofilm production in these bacteria is linked to antibiotic resistance and virulence genes, aiding survival.
Area of Science:
- Microbiology
- Infectious Diseases
- Antimicrobial Resistance
Background:
- The increasing prevalence of multidrug-resistant (MDR) Enterobacter aerogenes strains poses a significant threat in treating urinary tract infections (UTIs).
- Understanding the resistance mechanisms employed by these pathogens is crucial for developing effective therapeutic strategies.
Purpose of the Study:
- To investigate the mechanisms of antibiotic resistance in Enterobacter aerogenes strains isolated from UTIs.
- To explore the correlation between antibiotic resistance, biofilm formation, and the expression of virulence genes in these strains.
Main Methods:
- Collected and analyzed 786 urine samples for Enterobacter aerogenes isolation.
- Performed antibiotic susceptibility testing using Kirby-Bauer disk diffusion.
- Conducted biofilm formation assays and PCR for resistance and virulence gene detection.
Main Results:
- Identified 50 Enterobacter aerogenes strains, with imipenem showing the lowest resistance (30%).
- All isolates were biofilm producers; 64% produced extended-spectrum beta-lactamases (ESBLs).
- Significant associations were found between specific resistance genes (e.g., qnrA, tetA, Sul1) and biofilm formation, as well as between ceftriaxone resistance and blaCTX-M.
Conclusions:
- Biofilm production in Enterobacter aerogenes is significantly associated with increased antibiotic resistance and the presence of virulence genes.
- These biofilms contribute to bacterial colonization and survival within the host, highlighting a critical factor in UTI pathogenesis.
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