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Published on: January 17, 2014
Analysis of invasive pneumonia-causing strains of Streptococcus pneumoniae: serotypes and antimicrobial
Cristina R M Yoshioka1, Marina B Martinez, Maria C C Brandileone
1Faculdade de Medicina, Universidade de São Paulo, São Paulo, Brazil. crmy@hu.usp.br
Insights
Conjugate vaccines, particularly 10- and 13-valent, show significant potential against invasive pneumococcal pneumonia in children. Penicillin remains the preferred antibiotic treatment for this infection in the studied population.
Area of Science:
- Pediatrics
- Infectious Diseases
- Microbiology
Background:
- Invasive pneumococcal pneumonia (IPP) remains a significant cause of childhood hospitalization.
- Streptococcus pneumoniae serotypes vary geographically and over time, impacting vaccine effectiveness.
- Antibiotic resistance patterns are crucial for guiding treatment strategies.
Purpose of the Study:
- To identify prevalent pneumococcal serotypes in hospitalized children with IPP.
- To assess the coverage of current conjugate vaccines against identified serotypes.
- To determine the antibiotic susceptibility of isolated pneumococcal strains, focusing on penicillin.
Main Methods:
- A retrospective study analyzed 107 children hospitalized with S. pneumoniae pneumonia between 2003 and 2008.
- Inclusion criteria included age (29 days to 15 years) and confirmed pneumonia with positive blood or pleural fluid cultures.
- Serotyping and antibiotic susceptibility testing (minimum inhibitory concentration) were performed.
Main Results:
- Serotypes 14, 1, 5, 6B, and 3 were the most common.
- 10- and 13-valent conjugate vaccines covered 86.5% and 96.9% of identified serotypes, respectively.
- 93.5% of strains were susceptible to penicillin; no resistance was observed.
Conclusions:
- 10- and 13-valent conjugate vaccines have substantial potential to reduce IPP incidence.
- Penicillin is confirmed as an effective and appropriate first-line treatment for IPP in this setting.
- Continued surveillance of serotypes and resistance is vital for public health strategies.
Objectives:
To identify the most common pneumococcal serotypes in children hospitalized with invasive pneumonia, correlate isolated serotypes with those included in conjugate vaccines, and ascertain the sensitivity of the isolated pneumococcal strains to penicillin and other antibiotics.
Methods:
From January 2003 to October 2008, a retrospective study of hospitalized children with a diagnosis of Streptococcus pneumoniae pneumonia was conducted at the university hospital of Universidade de São Paulo. Criteria for inclusion were: age greater than 29 days and less than 15 years, radiological and clinical diagnosis of pneumonia, and isolation of Streptococcus pneumoniae in blood cultures and/or pleural effusion.
Results:
The study included 107 children. The most common serotypes were 14 (36.5%), 1 (16%), 5 (14.6%), 6B (6.3%) and 3 (4.2%). The proportion of identified serotypes contained in the heptavalent, 10-valent and 13-valent conjugate vaccines was 53.1, 86.5, and 96.9%, respectively. Pneumococcal strains were sensitive to penicillin (minimum inhibitory concentration, MIC ≤ 2 µg/mL) in 100 cases (93.5%) and displayed intermediate resistance (MIC = 4 µg/mL) in 7 cases (6.5%). No strains were penicillin-resistant (MIC ≥ 8 µg/mL) according to the Clinical and Laboratory Standards Institute 2008 standards. Tested isolates were highly sensitive to vancomycin, rifampicin, ceftriaxone, clindamycin, erythromycin, and chloramphenicol.
Conclusions:
Our results confirm a significant potential impact of conjugate vaccines, mainly 10-valent and 13-valent, on invasive pneumonia. Furthermore, susceptibility testing results show that penicillin is still the treatment of choice for invasive pneumonia in our setting.
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