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Microbial Etiology and Antibiotic Resistance Patterns of Urinary Tract Pathogens in Hospitalized Infants in Bahrain:
Deena Mohammed1,2, Hasan M Isa1,3, Maryam F Ali1
1Pediatrics, Salmaniya Medical Complex, Manama, BHR.
Insights
Urinary tract infections (UTIs) in infants are common. Aminoglycosides and nitrofurantoin show low resistance, making them preferred empirical treatments for UTIs, especially with rising extended-spectrum beta-lactamase (ESBL) producing organisms.
Area of Science:
- Pediatrics
- Infectious Diseases
- Clinical Microbiology
Background:
- Urinary tract infections (UTIs) are prevalent in infants, necessitating prompt diagnosis and treatment to prevent complications.
- The rise of antibiotic-resistant uropathogens, including extended-spectrum beta-lactamase (ESBL)-producing organisms, complicates empirical antibiotic selection for infant UTIs.
- Limited effective antibiotic options are available due to increasing antimicrobial resistance.
Purpose of the Study:
- To investigate local resistance patterns of uropathogens causing UTIs in hospitalized infants in Bahrain.
- To guide the selection of preferred empirical antibiotic treatment for infant UTIs.
Main Methods:
- Retrospective cross-sectional study analyzing medical records of infants (birth to one year) admitted with UTIs.
- Study conducted at Salmaniya Medical Complex from June 2015 to June 2017.
- Included 117 term infants, with 90.6% being less than six months old.
Main Results:
- *Escherichia coli* (49.6%) and *Klebsiella* (32.3%) were the most common uropathogens.
- Extended-spectrum beta-lactamase (ESBL)-producing organisms accounted for 36% of isolates.
- High resistance rates were observed for cephalosporins against *E. coli* (55.5%) and non-*E. coli* (44.6%).
- Aminoglycosides and nitrofurantoin demonstrated the lowest resistance rates (1.7%-3.9% for *E. coli*, 0%-19.1% for non-*E. coli*).
- Carbapenem resistance was zero in *E. coli* and 1.9% in non-*E. coli*.
Conclusions:
- *E. coli* is the predominant uropathogen in infant UTIs, with a significant prevalence of ESBL-producing strains.
- Aminoglycosides and nitrofurantoin are recommended as preferred empirical antibiotic choices due to low resistance rates.
- Carbapenem antibiotics are a suitable treatment option for infants with ESBL-producing uropathogens.
Introduction:
Urinary tract infections (UTIs) are fairly common in infants. Early diagnosis and prompt treatment are crucial to avoid complications. However, providing appropriate antibiotic treatment is a challenge to any clinician considering the rise in the urinary pathogens that are resistant to the commonly used antibiotics especially with the emergence of extended-spectrum beta-lactamase (ESBL)-producing organisms. Consequently, this leaves the physician with limited options of antibiotic choices. This study aims to investigate the local resistance patterns of uropathogens causing UTIs in hospitalized infants in Bahrain and to provide guidance for the preferred choice of empirical antibiotic treatment.
Methods:
A retrospective cross-sectional study with an analysis of the medical records of infants from birth to one year of age admitted with UTIs at Salmaniya Medical Complex between June 2015 and June 2017 was conducted.
Results:
Data were obtained from 117 term infants (no preterm infants were included), with 80 (68.4%) being male. A total of 106 (90.6%) patients were less than six months of age. The most frequently isolated organisms were Escherichia coli found in 66 (49.6%) patients, followed by Klebsiella in 43 (32.3%). Forty-eight (36%) were ESBL-producing organisms (31 and 17 of E. coli and Klebsiella, respectively). The highest antibiotic resistance of E. coli was found against cephalosporin (55.5%), while penicillin resistance was only 19.4% and co-trimoxazole was 14.4%. Resistance rates of non-E. coli organisms were highest against cephalosporin (44.6%), followed by nitrofurantoin (19.1%) and penicillin (18.5%). The overall resistance to cephalosporin antibiotics was highest against cephalothin (a first-generation cephalosporin) (54.9%). The second highest resistance rate was demonstrated against cefuroxime (a second-generation cephalosporin) (50.5%), followed by ceftriaxone (a third-generation cephalosporin) (45.1%). Lower resistance rates were found against cefotaxime (22.3%), followed by ceftazidime (33.3%). A resistance rate of zero was found against cefepime (a fourth-generation cephalosporin). Aminoglycosides and nitrofurantoin demonstrated the lowest resistance rates among all cultured uropathogens. Among all cultures, 3.9% of the E. coli were resistant to aminoglycosides, while non-E. coli organisms showed zero resistance to aminoglycosides. Regarding the nitrofurantoin antibiotic, 19% of non-E. coli bacteria showed resistance, while only 1.7% of E. coli were resistant to this antibiotic. Zero resistance to carbapenem was found in E. coli organisms (both ESBL and non-ESBL), compared to 1.9% resistance by non-E. coli organisms (both ESBL and non-ESBL combined).
Conclusion:
E. coli is the predominant uropathogen causing UTI in infants with high rates of ESBL organisms in our community. Since the highest resistance was found against cephalosporins, aminoglycosides and nitrofurantoin are the preferred empirical antibiotic options for the treatment of UTIs. For infants with ESBL organisms, carbapenem antibiotics represent a good treatment option.
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