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Published on: February 23, 2014
Pneumococcal disease manifestation in children before and after vaccination: what's new?
Ana Lucia Andrade1, Cristiana M Toscano, Ruth Minamisava
1Department of Community Health, Institute of Tropical Pathology and Public Health, Federal University of Goias, Rua 235, esq 1a. Avenida, Setor Leste Universitário, 74605-050 Goiania, Goias, Brazil. alssandrade@gmail.com
Insights
Pneumococcal infections cause significant childhood illness, particularly respiratory issues. New vaccines and diagnostic tools are crucial for managing these infections and combating antibiotic resistance.
Area of Science:
- Pediatrics
- Infectious Diseases
- Microbiology
Background:
- Pneumococcal infections are a major cause of childhood morbidity and mortality, especially in unvaccinated populations.
- Respiratory tract infections, not invasive diseases, are the most significant pneumococcal infections.
- Interactions between influenza virus (H1N1) and Streptococcus pneumoniae influence pneumonia outcomes.
Purpose of the Study:
- To review current understanding of pneumococcal infections in children.
- To highlight challenges and advancements in diagnosis and treatment.
- To discuss the impact of vaccination and emerging serotypes.
Main Methods:
- Literature review of radiological findings, molecular detection methods (real-time PCR), and clinical syndromes.
- Analysis of serotype distribution in post-vaccination eras.
- Discussion of diagnostic marker development needs.
Main Results:
- Atypical radiological patterns are common in bacteremic pneumonia.
- Real-time PCR enhances S. pneumoniae detection, especially after antibiotic use.
- Non-vaccine serotypes (1, 3, 5, 7F, 19A) and specific syndromes (hemolytic uremic syndrome, primary peritonitis) are increasing.
- Newer conjugate vaccines offer expanded serotype coverage.
Conclusions:
- Accurate diagnostic markers are needed to differentiate bacterial and viral pneumonia, guiding appropriate antibiotic use.
- Expanded serotype coverage in vaccines is vital for controlling pneumococcal infections and antibiotic-resistant strains.
- Continued surveillance and research are essential for managing evolving pneumococcal disease patterns.
Abstract:
Pneumococcal infections remain a relevant cause of morbidity and mortality in children, especially in countries where vaccination has not been introduced. In contrast to the common belief by many pediatricians, the most important pneumococcal infections are of the respiratory tract and not invasive diseases. The recent pandemic of the H1N1 virus prompted studies to better understand the interaction between the influenza virus, Streptococcus pneumoniae, and pneumonia outcomes. Radiological findings of bacteremic pneumonia have been well investigated and besides the typical alveolar consolidation, a broad spectrum of atypical patterns has been reported. Molecular techniques, such as real-time polymerase chain reaction (PCR), can improve the detection of S. pneumoniae in sterile fluids, mainly in regions where previous antibiotic therapy is a common practice. In the post vaccination era, new manifestations of pneumococcal invasive disease, such as hemolytic uremic syndrome, have increased in association with parapneumonic empyema. Moreover, serotypes not included in PCV7, particularly serotypes 1, 3, 5, 7F, and 19A, have been among the most common isolates in pneumococcal disease. In Latin America, pneumococcal primary peritonitis has been described as an important clinical syndrome in a growing proportion of patients, mainly in girls. The development of newer and more specific diagnostic markers to distinguish bacterial and viral pneumonia are urgently sought, and will be especially pertinent after the introduction of pneumococcal conjugate vaccines with expanded serotypes. Such markers would minimize inappropriate diagnosis of false positive cases and treatment with antibacterial agents, while increasing positive predictive values for diagnosis of bacterial pneumonia. The extension of serotype coverage with the new conjugate vaccines is promising for pneumococcal infections and coverage against antibiotic-resistant strains.
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