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Updated: Jul 27, 2025

Capsular Serotyping of Streptococcus pneumoniae by Latex Agglutination
Published on: September 25, 2014
Serotypes and antimicrobial resistance of
María Eugenia León1, Margarita Samudio2, Aníbal Kawabata1
1Laboratorio Central de Salud Pública, Asunción, Paraguay.
Insights
Pneumococcal conjugate vaccines (PCVs) in Paraguay shifted serotype distribution and reduced penicillin resistance in meningitis cases. However, increased resistance to other antibiotics and non-vaccine serotypes may impact vaccine effectiveness.
Area of Science:
- Microbiology
- Epidemiology
- Public Health
Background:
- Streptococcus pneumoniae causes significant mortality and morbidity in children globally, despite vaccination efforts.
- Understanding pneumococcal serotype distribution and antimicrobial resistance is crucial for public health decision-making, especially in Paraguay.
Purpose of the Study:
- To analyze pneumococcal serotype distribution and antimicrobial resistance patterns in children under 5 in Paraguay.
- To evaluate changes before and after the introduction of pneumococcal conjugate vaccines (PCVs).
Main Methods:
- Analysis of 885 isolates and 278 PCR-positive clinical specimens from 2006-2020.
- Utilized conventional and molecular microbiological techniques for confirmation and characterization.
- Compared pneumococcal disease characteristics across pre-vaccination, post-PCV10, and post-PCV13 periods.
Main Results:
- Serotypes covered by PCV10 significantly decreased post-vaccination, while PCV13-covered and non-PCV13 serotypes increased.
- Penicillin resistance in meningitis cases decreased post-vaccination; no ceftriaxone resistance was observed.
- Non-meningitis cases showed slight decreases in penicillin and ceftriaxone resistance but increased resistance to erythromycin and tetracycline.
Conclusions:
- A shift in circulating pneumococcal serotypes and antimicrobial resistance patterns was observed following PCV introduction.
- The rise of non-vaccine serotypes and multidrug resistance (8.5%) poses a potential challenge to the long-term success of pneumococcal conjugate vaccines.
Abstract:
Introduction. Streptococcus pneumoniae remains a major cause of mortality and morbidity worldwide in children <5 years of age, even with advances in vaccination programmes.Hypothesis/Gap Statement. Reviewing and reporting trends in the distribution of pneumococcal serotypes and antimicrobial resistance in Paraguay will be useful for decision-making in public health.Aim. This study analysed the serotype distribution and antimicrobial resistance of S. pneumoniae and the characteristics of pneumococcal disease in children <5 years old before and after the introduction of pneumococcal conjugate vaccines (PCVs).Methodology. A total of 885 isolates and 278 S. pneumoniae PCR-positive clinical specimens were referred to the Central Laboratory of Public Health (LCSP) within the meningitis and pneumonia laboratory based-surveillance network in the period 2006-2020. Conventional and molecular microbiological techniques were used for confirmation and characterization.Results. We identified 563 cases of pneumococcal disease in the pre-vaccination period, 325 cases in the post-PCV10 period and 275 cases in the post-PCV13 period. The serotypes covered by PCV10 decreased from 78.6-6.5 %. However, additional serotypes covered by PCV13 increased from 6.6-57.5% and non-PCV13 serotypes increased from 14.8-36.0 % (P<0.001) in the post-PCV13 period. In cases of meningitis, the rate of resistance to penicillin decreased after the introduction of conjugate vaccines. No resistance to ceftriaxone was found in any period. In cases without meningitis, the rate of resistance to penicillin and ceftriaxone decreased slightly. However, the rate of resistance to erythromycin and tetracycline increased and that to trimethoprim-sulfamethoxazole (SXT) decreased in the post-PCV13 period compared to the pre-PCV period. The multidrug resistance rate was 8.5 %.Conclusion. A change in the circulating serotypes and antimicrobial resistance to certain antibiotics was observed. Non-vaccine serotype circulation and multidrug resistance may compromise the success of the conjugate vaccines.
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