Related Experiment Video
Updated: Jul 16, 2026

Inducing Meningococcal Meningitis Serogroup C in Mice via Intracisternal Delivery
Published on: November 5, 2019
Live attenuated Streptococcus pneumoniae strains induce serotype-independent mucosal and systemic protection in mice
Aoife M Roche1, Samantha J King, Jeffrey N Weiser
1Department of Microbiology, University of Pennsylvania, Philadelphia, PA 19104-6076, USA.
Abstract:
Streptococcus pneumoniae is an important human pathogen causing both mucosal (otitis media and pneumonia) and systemic (sepsis and meningitis) diseases. Due to increasing rates of antibiotic resistance, there is an urgent need to improve prevention of pneumococcal disease. Two currently licensed vaccines have been successful in reducing pneumococcal disease, but there are limitations with their use and effectiveness. Another approach for prevention is the use of live attenuated vaccines. Here we investigate the safety and protection induced by live attenuated strains of S. pneumoniae containing combinations of deletions in genes encoding three of its major virulence determinants: capsular polysaccharide (cps), pneumolysin (ply), and pneumococcal surface protein A (pspA). Both the cps and ply/pspA mutants of a virulent type 6A isolate were significantly attenuated in a mouse model of sepsis. These attenuated strains retained the ability to colonize the upper respiratory tract. A single intranasal administration of live attenuated vaccine without adjuvant was sufficient to induce both systemic and mucosal protection from challenge with a high dose of the parent strain. Immunization with cps mutants demonstrated cross-protective immunity following challenge with a distantly related isolate. Serum and mucosal antibody titers were significantly increased in mice immunized with the vaccine strains, and this antibody is required for full protection, as microMT mice, which do not make functional, specific antibody, were not protected by immunization with vaccine strains. Thus, colonization by live attenuated S. pneumoniae is a potentially safe and less complex vaccine strategy that may offer broad protection.
Insights
Live attenuated Streptococcus pneumoniae strains, engineered by deleting key virulence genes, offer a promising new vaccine strategy. These safe and effective vaccines induce both mucosal and systemic immunity against pneumococcal diseases.
Area of Science:
- Microbiology
- Immunology
- Vaccinology
Background:
- Streptococcus pneumoniae causes significant mucosal and systemic diseases.
- Antibiotic resistance necessitates novel prevention strategies for pneumococcal infections.
- Current vaccines have limitations, driving research into alternative approaches like live attenuated vaccines.
Purpose of the Study:
- To investigate the safety and protective efficacy of live attenuated S. pneumoniae strains.
- To evaluate strains with deletions in capsular polysaccharide (cps), pneumolysin (ply), and pneumococcal surface protein A (pspA) genes.
- To assess the potential for a simplified, colonization-based vaccine strategy.
Main Methods:
- Development of S. pneumoniae strains with targeted gene deletions (cps, ply, pspA).
- Evaluation of strain attenuation and colonization ability in a mouse sepsis model.
- Assessment of systemic and mucosal immunity, including antibody responses and protection against challenge.
Main Results:
- Mutants lacking cps or ply/pspA were significantly attenuated in a mouse sepsis model.
- Attenuated strains successfully colonized the upper respiratory tract.
- Single intranasal administration induced systemic and mucosal protection, with cps mutants showing cross-protection.
- Immunization increased antibody titers, which were essential for protection.
Conclusions:
- Live attenuated S. pneumoniae strains represent a potentially safe and effective vaccine strategy.
- Colonization by attenuated strains can induce robust protective immunity.
- This approach may offer a less complex and broadly protective alternative to existing vaccines.

