Characterization of Ceftriaxone-Resistant Haemophilus influenzae Among Korean Children
Sanghoon Lee1, Gahee Kim1, Jung Hwa Kim1
1Department of Pediatrics, Asan Medical Center Children's Hospital, University of Ulsan College of Medicine, Seoul, Korea.
Insights
Ceftriaxone-resistant Haemophilus influenzae strains were identified in children, primarily linked to PBP3 alterations like S385T and L389F. The N526K mutation alone showed minimal impact on resistance.
Area of Science:
- Microbiology
- Infectious Diseases
- Genetics
Background:
- Haemophilus influenzae is a common cause of pediatric respiratory infections.
- Detection of ceftriaxone-resistant strains prompted an investigation into resistance mechanisms.
- Focus on penicillin-binding protein 3 (PBP3) alterations and beta-lactamase production.
Purpose of the Study:
- Investigate mechanisms of ceftriaxone resistance in H. influenzae.
- Identify specific PBP3 mutations and beta-lactamase presence associated with resistance.
- Determine the impact of these mechanisms on ceftriaxone minimum inhibitory concentrations (MICs).
Main Methods:
- Analysis of ceftriaxone-resistant H. influenzae isolates from a children's hospital (2014-2019).
- Ceftriaxone MIC determination using E-test (EUCAST guidelines).
- Detection of beta-lactamase via cefinase test and PCR; PBP3 alterations analyzed by ftsI gene sequencing.
Main Results:
- Nineteen ceftriaxone-resistant isolates were analyzed; 18 were non-typeable H. influenzae.
- Twelve isolates tested positive for TEM-1 PCR; various PBP3 alteration patterns (Groups II, III, III+, III-like+) were identified.
- Median ceftriaxone MIC was highest in Group III-like+ (S385T+L389F+R517H) and Group III+ (S385T+L389F+N526K).
Conclusions:
- Ceftriaxone resistance in pediatric H. influenzae is emerging in South Korea, associated with S385T and L389F PBP3 substitutions.
- The N526K mutation alone does not significantly contribute to ceftriaxone resistance.
- Further large-scale studies are needed to monitor antibiotic resistance trends in pediatric H. influenzae.
Background:
Haemophilus influenzae is a frequently encountered pathogen responsible for respiratory tract infections in children. Following the detection of ceftriaxone-resistant H. influenzae at our institution, we aimed to investigate the resistance mechanisms of ceftriaxone in H. influenzae, with a particular focus on alterations in penicillin-binding protein 3 (PBP3) and β-lactamase production.
Methods:
Among H. influenzae isolates collected at Asan Medical Center Children's Hospital from March 2014 to April 2019, ceftriaxone-resistant strains by the disk-diffusion test were included. Ceftriaxone minimum inhibitory concentrations (MICs) were determined using the E-test according to the European Committee on Antimicrobial Susceptibility Testing (EUCAST) guidelines. The presence of β-lactamase was assessed through cefinase test and TEM-1/ROB-1 polymerase chain reaction (PCR). PBP3 alterations were explored via ftsI gene sequencing.
Results:
Out of the 68 collected strains, 21 exhibited resistance to ceftriaxone in disk diffusion tests. Two strains were excluded due to failed subculture. Among 19 ceftriaxone-resistant H. influenzae isolates, eighteen were non-typeable H. influenzae, and twelve were positive for TEM-1 PCR. Isolates were classified into groups II (harboring only N526K, n = 3), III (N526K+S385T, n = 2), III+ (S385T+L389F+N526K, n = 11), and III-like+ (S385T+L389F+R517H, n = 3) according to the PBP3 alteration pattern. With a median ceftriaxone MIC of 0.190 mg/L (range, 0.008-0.750), the median ceftriaxone MIC was the highest in group III-like+ (0.250 mg/L), followed by groups III+ (0.190 mg/L), III (0.158 mg/L), and II (0.012 mg/L). All three strains belonging to group II, which did not harbor the S385T substitution, had ceftriaxone MICs of ≤ 0.125 mg/L.
Conclusion:
The emergence of ceftriaxone-resistant H. influenzae with ceftriaxone MIC values of up to 0.75 mg/L was observed even in children in South Korea, with most associated with S385T and L389F substitutions. The N526K mutation alone does not significantly impact ceftriaxone resistance. Further large-scale studies are essential to investigate changes in antibiotic resistance patterns and factors influencing antibiotic resistance in H. influenzae isolated from pediatric patients in Korea.
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