Alarming Antibiotic Resistance in Pediatric Oncology Patients: A Three-Year Prospective Cohort Study from Oman
Abeer Al Battashi1, Bishara Al Harrassi2, Nawal Al Maskari3
1Department of Pediatric Hematology and Oncology, The National Oncology Centre, Royal Hospital, Ministry of Health, Muscat, Oman.
Insights
Bloodstream infections (BSI) in pediatric oncology patients are often caused by gram-negative bacteria like Klebsiella. High antibiotic resistance among these pathogens necessitates urgent safety strategies.
Area of Science:
- Pediatric Oncology
- Infectious Diseases
- Microbiology
Background:
- Bloodstream infections (BSI) pose significant risks for immunocompromised pediatric cancer patients.
- These infections are linked to high rates of morbidity and mortality.
Purpose of the Study:
- To investigate the profile and antibiotic susceptibility of bacteria causing BSIs in children under 13 undergoing chemotherapy.
- To identify common bacterial pathogens and their resistance patterns.
Main Methods:
- A prospective cohort study was conducted from January 2015 to October 2017.
- Data collected included patient demographics, clinical details, microbial etiology, susceptibility, and outcomes.
Main Results:
- 74 episodes of BSI were identified in 38 patients (51% positive blood culture rate).
- Gram-negative organisms (57%) were dominant, with Klebsiella being most common (21%). Gram-positive bacteria, primarily Staphylococcus species (30%), were also prevalent.
- Significant antibiotic resistance was observed: one-third of gram-negative isolates showed resistance to four or more antibiotics, and 30% of gram-positive isolates were pan-resistant (excluding vancomycin).
Conclusions:
- Gram-negative bacteria, particularly Klebsiella, are the primary cause of BSIs in this pediatric oncology cohort.
- High rates of antibiotic resistance, especially to first-line treatments, highlight the need for enhanced patient safety measures and revised treatment protocols.
Background:
Bloodstream infections (BSI) are severe and challenging oncological complications, with a consequent high morbidity and mortality in the immunocompromised. We reviewed the profile and susceptibility of bacteria associated with infections in children under 13 years of age receiving chemotherapy.
Methods:
Prospective cohort study of pediatric oncology patients was conducted between January 2015 and October 2017 at the Royal Hospital in Oman. Patient demographics, clinical data, laboratory parameters, microbial etiology and susceptibility, and outcomes were retrieved and analyzed.
Results:
A total of 74 episodes of positive bacterial blood cultures were detected in 38 oncology patients (positive blood culture rate of 51%). Fifty-seven percent were positive for gram-negative organisms with Klebsiella (21%) being the most common gram-negative organism cultured, and the most common gram-positive organism was Staphylococcus (coagulase negative Staphylococcus (CONs) and S. Aureus) (30%). The majority of patients had gastrointestinal complaints (74%), and almost half (51%) had prolonged periods of neutropenia (>7 days). One third of gram-negative organisms were resistant to four or more antibiotics with a major resistance of 31% to piperacillin-tazobactam. Of the gram-positive organisms, 38% were resistant to at least four antibiotics and 30% were pan-resistant (except for vancomycin).
Conclusion:
The gram-negative organisms were dominant in BSIs with Klebsiella being the most common culprit. Bacteremia was prevalent, however, high resistance to first-line antibiotics was documented amongst gram-negative isolates, demanding strategies to ensure our patients' safety.
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