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Constructing Mutants in Serotype 1 Streptococcus pneumoniae strain 519/43
Published on: September 11, 2020
High pneumococcal DNA loads are associated with mortality in Malawian children with invasive pneumococcal disease
Enitan D Carrol1, Malcolm Guiver, Standwell Nkhoma
1Malawi-Liverpool-Wellcome Trust Clinical Research Programme, Department of Paediatrics, College of Medicine, University of Malawi, Blantyre, Malawi.
Insights
High Streptococcus pneumoniae DNA loads in blood and cerebrospinal fluid (CSF) are linked to fatal outcomes in children. These bacterial loads correlate with cytokine levels and are higher in meningitis than pneumonia cases.
Area of Science:
- Pediatric Infectious Diseases
- Molecular Diagnostics
- Immunology
Background:
- High bacterial counts in Streptococcus pneumoniae bacteremia predict severe invasive disease.
- Real-time PCR can quantify pneumococcal DNA loads in blood and CSF.
- Understanding the relationship between bacterial DNA, cytokines, and clinical outcomes is crucial.
Purpose of the Study:
- To determine pneumococcal DNA loads in blood and CSF of children with meningitis or pneumonia.
- To investigate the association between bacterial DNA loads, cytokine concentrations, and clinical presentation.
- To evaluate the relationship between bacterial DNA loads and patient outcomes.
Main Methods:
- Prospective recruitment of children with confirmed meningitis (n=82) or pneumonia (n=13).
- Collection of blood and CSF samples for pneumococcal bacterial DNA load quantification using real-time PCR.
- Measurement of cytokine concentrations (TNF-α, IL-1β, IL-6, IL-10) in blood and CSF.
Main Results:
- Median bacterial loads were significantly higher in non-survivors compared to survivors in both blood and CSF.
- In HIV-infected children, higher bacterial loads and cytokine levels were observed in non-survivors.
- Blood bacterial loads and cytokine concentrations were significantly higher in children with meningitis than pneumonia; CSF bacterial loads correlated with CSF IL-1β and IL-10.
Conclusions:
- Pneumococcal DNA loads in blood and CSF are associated with plasma cytokine concentrations.
- Higher bacterial loads were observed in meningitis compared to pneumonia.
- Elevated blood and CSF pneumococcal DNA loads are associated with a fatal outcome.
Background:
In bacteremia owing to Streptococcus pneumoniae, high bacterial counts at presentation have been shown to be predictive of the development of serious invasive disease. Using real-time PCR, we aimed to determine pneumococcal DNA loads in blood and CSF, and their relationship to cytokine concentrations, clinical presentation and outcome.
Methods:
Children with confirmed meningitis (n = 82) or pneumonia (n = 13) were prospectively recruited, and blood and CSF samples taken for pneumococcal bacterial DNA loads and cytokine determination.
Results:
At the time of admission, the median bacterial load in blood was 1.6 x 10 DNA copies/mL (range 0.00-1.54 x 10) and in CSF it was 5.77 x 10 DNA copies/mL (range 4.42 x 10 to 6.15 x 10). Median blood and CSF bacterial loads (log DNA copies/mL) were significantly higher in nonsurvivors than in survivors; blood (3.80 vs. 2.97, P = 0.003), CSF (8.17 vs. 7.50, P = 0.03). In HIV-infected children (n = 59), blood and CSF loads and plasma tumor necrosis factor-alpha, interleukin-1beta (IL-1beta), IL-6 and IL-10 were all significantly higher in nonsurvivors than in survivors, but in HIV-uninfected children (n = 36) this difference was not significant. Blood bacterial loads and plasma cytokine concentrations were significantly associated, and were all significantly higher in children with meningitis than in those with pneumonia. In children with meningitis, median CSF cytokine concentrations were significantly higher than median plasma cytokine concentrations (P < 0.001) and CSF bacterial loads were significantly associated with CSF IL-1beta (P = 0.002) and IL-10 (P = 0.001) concentrations.
Conclusions:
Pneumococcal DNA loads are associated with plasma cytokine concentrations, and are higher in meningitis than in pneumonia. High blood and CSF pneumococcal DNA loads are associated with a fatal outcome.
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