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Antimicrobial Resistance in Enterobacteriaceae Bacteria Causing Infection in Trauma Patients: A 5-Year Experience
Omika Katoch1, Surbhi Khurana1, Purva Mathur1
1Department of Laboratory Medicine, JPNA Trauma Centre, All India Institute of Medical Sciences, New Delhi, India.
Abstract:
Introduction Multiple drug resistance emergences among bacteria at an alarming rate worldwide are posing a serious threat to the treatment benefits that have been achieved with antibiotics. This crisis is due to the inappropriate and overuse of existing antibiotics. We evaluated the antimicrobial resistance pattern of Enterobacteriaceae pathogens isolated from intensive care units (ICUs), wards, and outpatient department (OPD) patients. Objectives The aim of the study is to determine the antimicrobial resistance pattern in bacteria of Enterobacteriaceae family. Material and Methods This is a retrospective study conducted at a tertiary care level-1 trauma center in the capital city of India. We collected all the retrospective data of 5 years from the laboratory information system software of the microbiology laboratory. The retrospective data included patients' details, samples detail, organism's identification, and their antimicrobial susceptibility testing, done by Vitek2 compact system and disk diffusion test according to each year's Clinical and Laboratory Standards Institute (CLSI) guidelines. This study included the interpretation of zone diameters and minimum inhibitory concentrations of all isolates according to CLSI guidelines, 2018. Results Among all the Enterobacteriaceae , Klebsiella spp. was the most commonly isolated pathogen, followed by Escherichia coli and Enterobacter spp. in ICUs and wards, while in OPD patients E. coli was the most commonly isolated pathogen, followed by Klebsiella spp. and Enterobacter spp. Enterobacteriaceae isolates remained resistant to all classes of cephalosporins in all settings. In addition, β lactam and β-lactamase inhibitor remained less effective. Carbapenems showed less resistance than quinolones and aminoglycosides. Among the different antimicrobial agents, tigecycline proved most effective in all settings; however, it showed more resistance than other studies. Conclusion Tigecycline proved effective among different multidrug resistance bacteria. Multidrug resistance in bacteria leads to prolonged hospital stays as well as makes the treatment less cost effective. Proper and judicious use of antimicrobials is the need of the hour.
Insights
This study reveals that tigecycline is effective against multidrug-resistant Enterobacteriaceae, including Klebsiella and E. coli. Judicious antibiotic use is crucial to combat rising bacterial resistance in healthcare settings.
Area of Science:
- Microbiology
- Infectious Diseases
- Pharmacology
Background:
- Antibiotic resistance in Enterobacteriaceae poses a global health threat.
- Inappropriate antibiotic use drives the emergence of multidrug resistance.
- Evaluating antimicrobial resistance patterns is vital for effective treatment strategies.
Purpose of the Study:
- To determine the antimicrobial resistance patterns of Enterobacteriaceae.
- To identify prevalent Enterobacteriaceae species in different hospital settings (ICUs, wards, OPD).
- To assess the efficacy of various antimicrobial agents against these resistant pathogens.
Main Methods:
- Retrospective study analyzing 5 years of data from a tertiary care center in India.
- Utilized laboratory information system data, including patient details, sample information, and organism identification.
- Antimicrobial susceptibility testing performed using Vitek 2 compact system and disk diffusion, interpreted per CLSI guidelines (2018).
Main Results:
- Klebsiella spp. was the most common isolate in ICUs/wards, while E. coli predominated in OPD.
- Enterobacteriaceae showed high resistance to cephalosporins and moderate resistance to beta-lactam/beta-lactamase inhibitors.
- Tigecycline demonstrated the highest effectiveness among tested agents, despite some observed resistance.
- Carbapenems showed lower resistance than quinolones and aminoglycosides.
Conclusions:
- Tigecycline is an effective option against multidrug-resistant Enterobacteriaceae.
- Antimicrobial resistance contributes to increased hospital stays and healthcare costs.
- Judicious and appropriate use of antibiotics is essential to mitigate resistance.
- Further research into resistance mechanisms and novel therapeutic strategies is warranted.
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