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Published on: March 3, 2023
Antibiotic Resistance of Campylobacter Species in a Pediatric Cohort Study
Francesca Schiaffino1,2, Josh M Colston1, Maribel Paredes-Olortegui3
1Department of International Health, Johns Hopkins Bloomberg School of Public Health, Baltimore, Maryland, USA.
Insights
Drug-resistant Campylobacter infections are common in young children. Amoxicillin/clavulanic acid shows high susceptibility, suggesting it as a potential treatment for campylobacteriosis, especially given the lack of link between macrolide exposure and resistance.
Area of Science:
- Microbiology
- Infectious Diseases
- Public Health
Background:
- Campylobacter infections pose a significant health burden, particularly in low-resource settings.
- Understanding antibiotic resistance patterns is crucial for effective treatment strategies.
Purpose of the Study:
- To determine antibiotic resistance patterns and epidemiology of drug-resistant Campylobacter spp. in a low-resource setting.
- To assess the association between macrolide exposure and macrolide-resistant Campylobacter infections.
Main Methods:
- A birth cohort of 303 children was followed until age 5.
- Stool samples were cultured for Campylobacter, and disk diffusion was used to test antibiotic susceptibility.
- Antibiotic resistance in Campylobacter jejuni and non-C. jejuni isolates was compared.
Main Results:
- High rates of resistance to ciprofloxacin (77.4%-79.8%) and azithromycin (4.9%-24.8%) were observed.
- 33.1% of children had Campylobacter strains nonsusceptible to both azithromycin and ciprofloxacin.
- Amoxicillin and clavulanic acid (94.0%) demonstrated high susceptibility rates.
Conclusions:
- There is a high incidence of quinolone- and macrolide-resistant Campylobacter infections in infants.
- Personal macrolide exposure did not correlate with macrolide-resistant Campylobacter infections.
- Amoxicillin/clavulanic acid is a potential treatment for campylobacteriosis, and the source of multidrug-resistant Campylobacter needs further investigation.
Abstract:
The objective of this study was to determine the phenotypic patterns of antibiotic resistance and the epidemiology of drug-resistant Campylobacter spp. from a low-resource setting. A birth cohort of 303 patients was followed until 5 years of age. Stool samples from asymptomatic children (n = 10,008) and those with diarrhea (n = 3,175) were cultured for Campylobacter Disk diffusion for ciprofloxacin (CIP), nalidixic acid (NAL), erythromycin (ERY), azithromycin (AZM), tetracycline (TE), gentamicin (GM), ampicillin (AMP), amoxicillin and clavulanic acid (AMC), ceftriaxone (CRO), chloramphenicol (C), and trimethoprim-sulfamethoxazole (TMS) was determined. Antibiotic resistances in Campylobacter jejuni and non-C. jejuni isolates from surveillance and diarrhea samples were compared, and the association between personal macrolide exposure and subsequent occurrence of a macrolide-resistant Campylobacter spp. was assessed. Of 917 Campylobacter isolates, 77.4% of C. jejuni isolates and 79.8% of non-C. jejuni isolates were resistant to ciprofloxacin, while 4.9% of C. jejuni isolates and 24.8% of non-C. jejuni isolates were not susceptible to azithromycin. Of the 303 children, 33.1% had been diagnosed with a Campylobacter strain nonsusceptible to both azithromycin and ciprofloxacin. Personal macrolide exposure did not affect the risk of macrolide-resistant Campylobacter Amoxicillin and clavulanic acid (94.0%) was one of the antibiotics with the highest rates of susceptibility. There is a high incidence of quinolone- and macrolide-resistant Campylobacter infections in infants under 24 months of age. Given the lack of association between personal exposure to macrolides and a subsequent Campylobacter infection resistant to macrolides, there is a need to evaluate the source of multidrug-resistant (MDR) Campylobacter This study provides compelling evidence to propose amoxicillin/clavulanic acid as a treatment for campylobacteriosis.
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