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Capsular Serotyping of Streptococcus pneumoniae Using the Quellung Reaction
Published on: February 24, 2014
Intracellular replication of Streptococcus pneumoniae inside splenic macrophages serves as a reservoir for
Giuseppe Ercoli1, Vitor E Fernandes2, Wen Y Chung3
1Department of Genetics and Genome Biology, University of Leicester, Leicester, UK.
Abstract:
Bacterial septicaemia is a major cause of mortality, but its pathogenesis remains poorly understood. In experimental pneumococcal murine intravenous infection, an initial reduction of bacteria in the blood is followed hours later by a fatal septicaemia. These events represent a population bottleneck driven by efficient clearance of pneumococci by splenic macrophages and neutrophils, but as we show in this study, accompanied by occasional intracellular replication of bacteria that are taken up by a subset of CD169+ splenic macrophages. In this model, proliferation of these sequestered bacteria provides a reservoir for dissemination of pneumococci into the bloodstream, as demonstrated by its prevention using an anti-CD169 monoclonal antibody treatment. Intracellular replication of pneumococci within CD169+ splenic macrophages was also observed in an ex vivo porcine spleen, where the microanatomy is comparable with humans. We also showed that macrolides, which effectively penetrate macrophages, prevented septicaemia, whereas beta-lactams, with inefficient intracellular penetration, failed to prevent dissemination to the blood. Our findings define a shift in our understanding of the pneumococcus from an exclusively extracellular pathogen to one with an intracellular phase. These findings open the door to the development of treatments that target this early, previously unrecognized intracellular phase of bacterial sepsis.
Insights
Pneumonia bacteria can hide inside spleen cells, causing fatal sepsis. Targeting this hidden intracellular phase with drugs like macrolides may prevent severe bacterial infections.
Area of Science:
- Immunology
- Microbiology
- Pathogenesis
Background:
- Bacterial septicaemia, particularly pneumococcal, is a significant cause of mortality with poorly understood pathogenesis.
- An experimental murine model shows initial bacterial clearance followed by fatal septicaemia.
Purpose of the Study:
- To investigate the intracellular phase of pneumococcal infection within splenic macrophages.
- To identify mechanisms of bacterial dissemination and potential therapeutic targets.
Main Methods:
- Utilized a murine intravenous infection model.
- Employed anti-CD169 monoclonal antibody treatment.
- Examined ex vivo porcine spleen tissue.
- Assessed the efficacy of macrolides and beta-lactams.
Main Results:
- Identified intracellular replication of *Streptococcus pneumoniae* within CD169+ splenic macrophages.
- Demonstrated that proliferation of intracellular bacteria fuels bloodstream dissemination.
- Showed that anti-CD169 antibody treatment prevented septicaemia.
- Observed similar intracellular replication in porcine spleen macrophages.
- Macrolides prevented septicaemia, while beta-lactams did not.
Conclusions:
- Pneumococcus exhibits an intracellular phase within splenic macrophages, challenging its view as solely extracellular.
- Intracellular bacterial replication serves as a reservoir for sepsis development.
- Targeting this intracellular phase and utilizing macrophage-penetrating antibiotics offers a novel therapeutic strategy for bacterial sepsis.
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