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Combined effects of lactoferrin and lysozyme on Streptococcus pneumoniae killing
G O André1, W R Politano1, S Mirza2
1Laboratório de Biologia Molecular e Farmacologia, Universidade São Francisco, Bragança Paulista, Brazil.
Abstract:
Streptococcus pneumoniae is a common colonizer of the human nasopharynx, which can occasionally spread to sterile sites, causing diseases such as otitis media, sinusitis, pneumonia, meningitis and bacteremia. Human apolactoferrin (ALF) and lysozyme (LZ) are two important components of the mucosal innate immune system, exhibiting lytic effects against a wide range of microorganisms. Since they are found in similar niches of the host, it has been proposed that ALF and LZ could act synergistically in controlling bacterial spread throughout the mucosa. The combination of ALF and LZ has been shown to enhance killing of different pathogens in vitro, with ALF facilitating the latter action of LZ. The aim of the present work was to investigate the combined effects of ALF and LZ on S pneumoniae. Concomitant addition of ALF and LZ had a synergistic killing effect on one of the pneumococci tested. Furthermore, the combination of ALF and ALZ was more bactericidal than lysozyme alone in all pneumococcal strains. Pneumococcal surface protein A (PspA), an important vaccine candidate, partially protects pneumococci from ALF mediated killing, while antibodies against one PspA enhance killing of the homologous strain by ALF. However, the serological variability of this molecule could limit the effect of anti-PspA antibodies on different pneumococci. Therefore, we investigated the ability of anti-PspA antibodies to increase ALF-mediated killing of strains that express different PspAs, and found that antisera to the N-terminal region of PspA were able to increase pneumococcal lysis by ALF, independently of the sequence similarities between the molecule expressed on the bacterial surface and that used to produce the antibodies. LF binding to the pneumococcal surface was confirmed by flow cytometry, and found to be inhibited in presence of anti-PspA antibodies. On a whole, the results suggest a contribution of ALF and LZ to pneumococcal clearance, and confirm PspA's ability to interact with ALF.
Insights
Human apolactoferrin (ALF) and lysozyme (LZ) show synergistic effects against Streptococcus pneumoniae. Antibodies targeting PspA enhance ALF
Area of Science:
- Immunology
- Microbiology
- Biochemistry
Background:
- Streptococcus pneumoniae colonizes the nasopharynx and causes invasive diseases.
- Human apolactoferrin (ALF) and lysozyme (LZ) are key innate immune components with antimicrobial properties.
- Synergistic action between ALF and LZ is proposed for mucosal bacterial control.
Purpose of the Study:
- To investigate the combined effects of ALF and LZ on Streptococcus pneumoniae.
- To evaluate the role of Pneumococcal surface protein A (PspA) in ALF-mediated killing.
- To assess the efficacy of anti-PspA antibodies in enhancing ALF's bactericidal activity.
Main Methods:
- In vitro assessment of ALF and LZ combined effects on S. pneumoniae.
- Flow cytometry to confirm ALF binding to pneumococcal surface.
- Evaluation of anti-PspA antibody-mediated enhancement of ALF killing.
Main Results:
- Concomitant ALF and LZ exhibited synergistic killing of one pneumococcal strain.
- ALF and LZ combination demonstrated enhanced bactericidal activity against all tested strains compared to LZ alone.
- Anti-PspA antibodies, particularly against the N-terminal region, enhanced ALF-mediated pneumococcal lysis, irrespective of PspA sequence similarity.
- PspA partially inhibited ALF-mediated killing, and anti-PspA antibodies reduced ALF binding to the pneumococcal surface.
Conclusions:
- ALF and LZ contribute to pneumococcal clearance.
- PspA interacts with ALF, influencing bacterial susceptibility.
- Targeting PspA with antibodies can enhance ALF's efficacy against S. pneumoniae.
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