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Updated: Feb 24, 2026

Visualization of Streptococcus pneumoniae within Cardiac Microlesions and Subsequent Cardiac Remodeling
Published on: April 7, 2015
Streptococcus pneumoniae in the heart subvert the host response through biofilm-mediated resident macrophage killing
Anukul T Shenoy1,2, Terry Brissac1, Ryan P Gilley2
1Department of Microbiology, The University of Alabama at Birmingham, Birmingham, AL, United States of America.
Abstract:
For over 130 years, invasive pneumococcal disease has been associated with the presence of extracellular planktonic pneumococci, i.e. diplococci or short chains in affected tissues. Herein, we show that Streptococcus pneumoniae that invade the myocardium instead replicate within cellular vesicles and transition into non-purulent biofilms. Pneumococci within mature cardiac microlesions exhibited salient biofilm features including intrinsic resistance to antibiotic killing and the presence of an extracellular matrix. Dual RNA-seq and subsequent principal component analyses of heart- and blood-isolated pneumococci confirmed the biofilm phenotype in vivo and revealed stark anatomical site-specific differences in virulence gene expression; the latter having major implications on future vaccine antigen selection. Our RNA-seq approach also identified three genomic islands as exclusively expressed in vivo. Deletion of one such island, Region of Diversity 12, resulted in a biofilm-deficient and highly inflammogenic phenotype within the heart; indicating a possible link between the biofilm phenotype and a dampened host-response. We subsequently determined that biofilm pneumococci released greater amounts of the toxin pneumolysin than did planktonic or RD12 deficient pneumococci. This allowed heart-invaded wildtype pneumococci to kill resident cardiac macrophages and subsequently subvert cytokine/chemokine production and neutrophil infiltration into the myocardium. This is the first report for pneumococcal biofilm formation in an invasive disease setting. We show that biofilm pneumococci actively suppress the host response through pneumolysin-mediated immune cell killing. As such, our findings contradict the emerging notion that biofilm pneumococci are passively immunoquiescent.
Insights
Streptococcus pneumoniae forms cardiac biofilms in invasive disease, resisting antibiotics and suppressing host immunity via pneumolysin. This challenges the idea of passive immunoquiescence in pneumococcal biofilms.
Area of Science:
- Microbiology
- Immunology
- Cardiovascular Disease
Background:
- Invasive pneumococcal disease is historically linked to planktonic Streptococcus pneumoniae.
- The role of pneumococcal biofilms in invasive infections remains largely unexplored.
Purpose of the Study:
- To investigate the in vivo behavior of Streptococcus pneumoniae within the myocardium.
- To characterize the phenotype and host interaction of pneumococci in cardiac microlesions.
- To identify novel virulence factors and host immune evasion strategies.
Main Methods:
- Dual RNA-sequencing of heart- and blood-isolated pneumococci.
- Principal component analysis for virulence gene expression.
- Genomic island analysis and targeted gene deletion (Region of Diversity 12).
- Assessment of antibiotic resistance, biofilm formation, and host immune cell responses (macrophages, neutrophils).
- Pneumolysin quantification and functional assays.
Main Results:
- Streptococcus pneumoniae forms cardiac biofilms in vivo, exhibiting antibiotic resistance and an extracellular matrix.
- Significant anatomical site-specific differences in pneumococcal virulence gene expression were identified.
- Three novel, exclusively expressed in vivo genomic islands were discovered.
- Deletion of Region of Diversity 12 resulted in biofilm deficiency and increased cardiac inflammation.
- Biofilm pneumococci released more pneumolysin, killing cardiac macrophages and suppressing host cytokine/chemokine and neutrophil responses.
Conclusions:
- This study reports the first instance of pneumococcal biofilm formation in invasive disease.
- Cardiac biofilm pneumococci actively suppress host immunity through pneumolysin-mediated macrophage killing.
- These findings contradict the notion of passively immunoquiescent pneumococcal biofilms and highlight their active immune evasion role.
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