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Targeting Alpha Toxin and ClfA with a Multimechanistic Monoclonal-Antibody-Based Approach for Prophylaxis of Serious
C Tkaczyk1, M M Hamilton1, A Sadowska1
1MedImmune, a member of the AstraZeneca Group, Gaithersburg, Maryland, USA.
Unlabelled:
Staphylococcus aureus produces numerous virulence factors, each contributing different mechanisms to bacterial pathogenesis in a spectrum of diseases. Alpha toxin (AT), a cytolytic pore-forming toxin, plays a key role in skin and soft tissue infections and pneumonia, and a human anti-AT monoclonal antibody (MAb), MEDI4893*, has been shown to reduce disease severity in dermonecrosis and pneumonia infection models. However, interstrain diversity and the complex pathogenesis of S. aureus bloodstream infections suggests that MEDI4893* alone may not provide adequate protection against S. aureus sepsis. Clumping factor A (ClfA), a fibrinogen binding protein, is an important virulence factor facilitating S. aureus bloodstream infections. Herein, we report on the identification of a high-affinity anti-ClfA MAb, 11H10, that inhibits ClfA binding to fibrinogen, prevents bacterial agglutination in human plasma, and promotes opsonophagocytic bacterial killing (OPK). 11H10 prophylaxis reduced disease severity in a mouse bacteremia model and was dependent on Fc effector function and OPK. Additionally, prophylaxis with 11H10 in combination with MEDI4893* provided enhanced strain coverage in this model and increased survival compared to that obtained with the individual MAbs. The MAb combination also reduced disease severity in murine dermonecrosis and pneumonia models, with activity similar to that of MEDI4893* alone. These results indicate that an MAb combination targeting multiple virulence factors provides benefit over a single MAb neutralizing one virulence mechanism by providing improved efficacy, broader strain coverage, and protection against multiple infection pathologies.
Importance:
Alternative strategies to broad-spectrum antibiotics are required to combat the antibiotic resistance epidemic. Previous attempts at active or passive immunization against Staphylococcus aureus targeting single antigens have failed in clinical trials despite positive preclinical data. To provide broad disease and isolate coverage, an effective immunization strategy likely must target multiple virulence mechanisms of the pathogen. Herein, we tested a multimechanistic MAb combination targeting alpha toxin (AT) and clumping factor A (ClfA) that neutralizes AT-mediated cytotoxicity, blocks fibrinogen binding by ClfA, prevents bacterial agglutination, targets the bacteria for opsonophagocytic killing, and provides broad isolate coverage in a lethal-bacteremia model. Although each MAb alone was effective in bacteremia against some individual isolates, the MAb combination provided improved protection against other isolates. These results illustrate the importance of targeting multiple virulence mechanisms and highlight the potential for an MAb combination targeting AT and ClfA to effectively prevent S. aureus disease.
Insights
A combination of monoclonal antibodies targeting Staphylococcus aureus alpha toxin and clumping factor A offers enhanced protection against sepsis and other infections. This dual-targeting approach improves efficacy and broadens coverage compared to single-antibody treatments.
Area of Science:
- Microbiology
- Immunology
- Infectious Diseases
Background:
- Staphylococcus aureus employs multiple virulence factors, including alpha toxin (AT) and clumping factor A (ClfA), contributing to diverse infections.
- Existing treatments face challenges due to bacterial resistance and strain diversity, necessitating novel therapeutic strategies.
- Monoclonal antibodies (MAbs) targeting single virulence factors have shown limited success in clinical trials for S. aureus infections.
Purpose of the Study:
- To evaluate a combination of anti-AT (MEDI4893*) and anti-ClfA (11H10) monoclonal antibodies for preventing and treating S. aureus infections.
- To assess the efficacy of this MAb combination in models of bacteremia, dermonecrosis, and pneumonia.
- To determine if targeting multiple virulence factors provides superior protection compared to single-target MAbs.
Main Methods:
- Developed and characterized a high-affinity anti-ClfA MAb (11H10) that inhibits fibrinogen binding and bacterial agglutination.
- Tested individual MAbs (MEDI4893*, 11H10) and their combination in mouse models of S. aureus bacteremia, dermonecrosis, and pneumonia.
- Assessed the role of Fc effector function and opsonophagocytic killing (OPK) in MAb-mediated protection.
Main Results:
- The anti-ClfA MAb 11H10 promoted OPK and reduced disease severity in a mouse bacteremia model.
- Prophylaxis with the combination of anti-AT and anti-ClfA MAbs provided enhanced protection and increased survival in a lethal bacteremia model compared to individual MAbs.
- The MAb combination demonstrated broad strain coverage and reduced disease severity in dermonecrosis and pneumonia models.
Conclusions:
- Targeting multiple S. aureus virulence factors with a combination of MAbs offers improved efficacy and broader protection against diverse infections.
- The combination of anti-AT and anti-ClfA MAbs represents a promising therapeutic strategy to combat S. aureus pathogenesis.
- This multimechanistic approach holds potential for overcoming limitations of single-target therapies and addressing antibiotic resistance.
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