Related Experiment Video
Updated: Jun 13, 2025

Constructing Mutants in Serotype 1 Streptococcus pneumoniae strain 519/43
Published on: September 11, 2020
Pneumolysin-responsive liposomal platform for selective treatment of Streptococcus pneumoniae
Ethan Watt1, Ilinca Andriescu1, Emmanuel A Ho2,3
1School of Pharmacy, University of Waterloo, Waterloo, ON, N2G 1C5, Canada.
Abstract:
The bacterium Streptococcus pneumoniae has become a leading cause of meningitis, sepsis, and bacterial pneumonia worldwide, with increased prevalence of antibiotic-resistant serotypes serving to exacerbate the issue. The main factor responsible for colonization and immune response escape in pneumococcal infections is the secreted molecule pneumolysin, which is a subset within a family of related toxins that form transmembrane pores in biological membranes through cholesterol recognition and binding. The conserved activity and structure of pneumolysin between all observed S. pneumoniae serotypes, along with its requirement for pathogenicity, has made this molecule an attractive target for vaccination, diagnostic, and sequestration platforms, but not yet as a facilitative agent for therapeutic treatment. Consequently, the present work aimed to examine the impact of liposomal cholesterol content for pneumolysin-induced release of the encapsulated antimicrobial peptide nisin. It was determined that a cholesterol content above 45 mol% was necessary to facilitate interactions with both purified pneumolysin toxin and S. pneumoniae culture, demonstrated through enhanced nisin release and a reduction in hemolytic rates upon exposure of the toxin with cholesterol-rich vesicles. Antibacterial testing highlighted the ability of the developed platform to elicit a potent and specific bactericidal response in vitro against cultured S. pneumoniae when compared to a control strain, Staphylococcus epidermidis. It further improved viability of a fibroblast cell line upon S. pneumoniae challenge, outperforming free nisin via the synergistic impact of simultaneous bacterial clearance and pneumolysin neutralization. These findings collectively indicate that cholesterol-rich liposomes hold promise as a selective treatment platform against pneumococcal infections.
Insights
Cholesterol-rich liposomes effectively neutralize pneumolysin, a toxin from Streptococcus pneumoniae. This novel platform enhances antimicrobial peptide delivery, offering a promising new treatment for pneumococcal infections.
Area of Science:
- Microbiology
- Biochemistry
- Drug Delivery
Background:
- Streptococcus pneumoniae causes meningitis, sepsis, and pneumonia globally.
- Antibiotic resistance in S. pneumoniae is a growing concern.
- Pneumolysin, a toxin, is crucial for pneumococcal colonization and immune evasion.
Purpose of the Study:
- To investigate the effect of liposomal cholesterol content on pneumolysin-mediated release of the antimicrobial peptide nisin.
- To evaluate cholesterol-rich liposomes as a therapeutic platform against pneumococcal infections.
Main Methods:
- Liposomes with varying cholesterol content were synthesized.
- Interaction of liposomes with purified pneumolysin and S. pneumoniae cultures was assessed.
- Nisin release, hemolytic rates, and antibacterial activity in vitro were measured.
- Fibroblast cell viability was evaluated under S. pneumoniae challenge.
Main Results:
- Cholesterol content above 45 mol% in liposomes facilitated interaction with pneumolysin and S. pneumoniae.
- Cholesterol-rich liposomes enhanced nisin release and reduced pneumolysin-induced hemolysis.
- The liposomal platform demonstrated potent, specific bactericidal activity against S. pneumoniae in vitro.
- Improved fibroblast cell viability was observed due to simultaneous bacterial clearance and pneumolysin neutralization.
Conclusions:
- Cholesterol-rich liposomes are effective in neutralizing pneumolysin and delivering antimicrobial peptides.
- This platform shows potential for selective treatment of pneumococcal infections.
- The synergistic effect of bacterial clearance and toxin neutralization offers therapeutic advantages.
More Related Videos
Related Concept Videos
Pneumonia IV: Management
Bacterial Pneumonia Treatment
For bacterial pneumonia, antibiotics serve as the cornerstone of therapy. Initial treatment often begins with empirical antibiotics, tailored to the anticipated causative organism and adjusted based on culture results. Key antibiotic choices include:
Pneumonia I: Introduction
Risk Factors
Various factors influence the likelihood of developing pneumonia. Age plays a crucial role, with infants, children under two, and individuals over 65 at increased risk due to their...

