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Updated: Aug 30, 2026

Experimental Human Pneumococcal Carriage
Published on: February 15, 2013
Pneumococcal carriage results in ganglioside-mediated olfactory tissue infection
Frederik W van Ginkel1, Jerry R McGhee, James M Watt
1Department of Microbiology, Immunobiology Vaccine Center, University of Alabama at Birmingham, Birmingham, AL 35294-2170, USA. frits@uab.edu
Abstract:
Streptococcus pneumoniae cause considerable morbidity and mortality, with persistent neurological sequelae, particularly in young children and the elderly. It is widely assumed that carriage occurs through direct mucosal colonization from the environment whereas meningitis results from invasion from the blood. However, the results of published studies can be interpreted that pneumococci may enter the brain directly from the nasal cavity by axonal transport through olfactory nerves. This hypothesis is based on findings that (i) teichoic acid of the pneumococcal cell wall interact with gangliosides (GLS), (ii) the interaction of GLS with cholera toxin leads to axonal transport through the olfactory nerves into the brain, and (iii) viruses enter the brain through axonal transport into olfactory nerves. After nasal inoculation, we observe high numbers of pneumococci in nasal washes and the olfactory nerves and epithelium. Significant numbers of pneumococci also infected the olfactory bulbs, brain, and the trigeminal ganglia. The absence of bacteremia in this model makes it unlikely that the bacteria entered the brain from the blood stream. Recovery of colony-forming units from the brain, lungs, olfactory nerves, and epithelium and nasal washes was inhibited by incubating pneumococci with GLS before nasal inoculation. These findings, confirmed by PCR and immunohistochemistry, support a GLS-mediated process of infection and are consistent with pneumococci reaching the brain through retrograde axonal transport.
Insights
Streptococcus pneumoniae may invade the brain directly via olfactory nerves, bypassing the bloodstream. Gangliosides (GLS) mediate this infection route, suggesting new therapeutic targets for pneumococcal meningitis.
Area of Science:
- Neuroscience
- Microbiology
- Infectious Diseases
Background:
- Streptococcus pneumoniae causes significant illness and death, especially in vulnerable populations.
- Current understanding suggests pneumococcal meningitis arises from bloodstream invasion.
- An alternative hypothesis proposes direct brain entry via olfactory nerves.
Purpose of the Study:
- To investigate the potential for direct Streptococcus pneumoniae entry into the brain through olfactory nerves.
- To explore the role of gangliosides (GLS) in pneumococcal infection of the central nervous system.
Main Methods:
- Nasal inoculation of Streptococcus pneumoniae in a model system.
- Detection of bacteria in nasal passages, olfactory nerves, brain, and trigeminal ganglia.
- Assessment of bacteremia absence.
- Inhibition assays using GLS pre-incubation.
- Confirmation via PCR and immunohistochemistry.
Main Results:
- High pneumococcal loads were found in nasal washes, olfactory nerves, and epithelium post-inoculation.
- Infection extended to olfactory bulbs, brain, and trigeminal ganglia.
- Bacteremia was notably absent, refuting blood-borne invasion.
- GLS pre-incubation significantly inhibited bacterial recovery from multiple sites.
Conclusions:
- Findings support direct pneumococcal entry into the brain via retrograde axonal transport through olfactory nerves.
- Ganglioside-mediated mechanisms are implicated in this infection pathway.
- This challenges the traditional view of meningitis pathogenesis and suggests novel therapeutic strategies.
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