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The gastrointestinal antibiotic resistome in pediatric leukemia and lymphoma patients
Tamara MacDonald1,2, Katherine A Dunn3,4,5, Jane MacDonald3,6
1Department of Pharmacy, IWK Health, Halifax, NS, Canada.
Insights
Antibiotic use in children with leukemia and lymphoma alters the gut resistome, increasing multidrug resistance genes linked to opportunistic pathogens. Prudent antibiotic use is crucial to reduce infections in this vulnerable population.
Area of Science:
- Microbiology
- Genomics
- Oncology
Background:
- Children with leukemia and lymphoma frequently experience febrile neutropenia, often treated with prolonged empiric antibiotics like β-lactams and vancomycin.
- The impact of these extended antibiotic regimens on the gut resistome, including antibiotic resistance genes (ARGs), remains largely unknown.
Purpose of the Study:
- To investigate how repeated courses and duration of antibiotic exposure affect the abundance and types of ARGs in pediatric oncology patients.
- To analyze the shifts in gut microbial taxonomic composition associated with antibiotic use.
Main Methods:
- Shotgun metagenome sequencing of 127 stool samples from 39 pediatric leukemia and lymphoma patients.
- Analysis of ARG abundance, categorized by antibiotic course frequency (none, 1-2, 3+) and duration (none, short, long/mixed) for specific antibiotics and overall use.
- Assessment of changes in bacterial taxa and ARG prevalence in relation to antibiotic exposure patterns.
Main Results:
- Repeated antibiotic courses and longer durations correlated with decreased Bacteroidetes and β-lactam resistance genes.
- Opportunistic Firmicutes and Proteobacteria taxa, along with multidrug resistance genes (predominantly efflux pumps), increased with antibiotic exposure.
- Multidrug ARGs were primarily associated with opportunistic pathogens, suggesting a link between antibiotic pressure and the proliferation of these microbes.
Conclusions:
- Drug efflux mechanisms may enable opportunistic pathogens to persist or increase in the gut resistome despite antibiotic treatment.
- The persistence of opportunistic pathogens in a dysbiotic gut can elevate the risk of severe infections, including bacteremia.
- Antimicrobial stewardship, optimizing antibiotic use and duration, is vital for reducing morbidity and mortality in pediatric oncology patients.
Introduction:
Most children with leukemia and lymphoma experience febrile neutropenia. These are treated with empiric antibiotics that include β-lactams and/or vancomycin. These are often administered for extended periods, and the effect on the resistome is unknown.
Methods:
We examined the impact of repeated courses and duration of antibiotic use on the resistome of 39 pediatric leukemia and lymphoma patients. Shotgun metagenome sequences from 127 stool samples of pediatric oncology patients were examined for abundance of antibiotic resistance genes (ARGs) in each sample. Abundances were grouped by repeated courses (no antibiotics, 1-2 courses, 3+ courses) and duration (no use, short duration, long and/or mixed durationg) of β-lactams, vancomycin and "any antibiotic" use. We assessed changes in both taxonomic composition and prevalence of ARGs among these groups.
Results:
We found that Bacteroidetes taxa and β-lactam resistance genes decreased, while opportunistic Firmicutes and Proteobacteria taxa, along with multidrug resistance genes, increased with repeated courses and/or duration of antibiotics. Efflux pump related genes predominated (92%) among the increased multidrug genes. While we found β-lactam ARGs present in the resistome, the taxa that appear to contain them were kept in check by antibiotic treatment. Multidrug ARGs, mostly efflux pumps or regulators of efflux pump genes, were associated with opportunistic pathogens, and both increased in the resistome with repeated antibiotic use and/or increased duration.
Conclusions:
Given the strong association between opportunistic pathogens and multidrug-related efflux pumps, we suggest that drug efflux capacity might allow the opportunistic pathogens to persist or increase despite repeated courses and/or duration of antibiotics. While drug efflux is the most direct explanation, other mechanisms that enhance the ability of opportunistic pathogens to handle environmental stress, or other aspects of the treatment environment, could also contribute to their ability to flourish within the gut during treatment. Persistence of opportunistic pathogens in an already dysbiotic and weakened gastrointestinal tract could increase the likelihood of life-threatening blood borne infections. Of the 39 patients, 59% experienced at least one gastrointestinal or blood infection and 60% of bacteremia's were bacteria found in stool samples. Antimicrobial stewardship and appropriate use and duration of antibiotics could help reduce morbidity and mortality in this vulnerable population.
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