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Opsono-Adherence Assay to Evaluate Functional Antibodies in Vaccine Development Against Bacillus anthracis and Other Encapsulated Pathogens
Published on: May 19, 2020
Analysis of the Fc gamma receptor-dependent component of neutralization measured by anthrax toxin neutralization
Anita Verma1, Miriam M Ngundi, Bruce D Meade
1Center for Biologics Evaluation and Research, Food and Drug Administration, Bethesda, Maryland 20892, USA.
Abstract:
Anthrax toxin neutralization assays are used to measure functional antibody levels elicited by anthrax vaccines in both preclinical and clinical studies. In this study, we investigated the magnitude and molecular nature of Fc gamma (Fcgamma) receptor-dependent toxin neutralization observed in commonly used forms of the anthrax toxin neutralization assay. Significantly more Fcgamma receptor-dependent neutralization was observed in the J774A.1 cell-based assay than in the RAW 264.7 cell-based assay, a finding that could be due to the larger numbers of Fcgamma receptors that we found on J774A.1 cells by using flow cytometry. Thus, the extent to which Fcgamma receptor-dependent neutralization contributes to the total neutralization measured by the assay depends on the specific cell type utilized in the assay. Using Fcgamma receptor blocking monoclonal antibodies, we found that at least three murine Fcgamma receptor classes, IIB, III, and IV, can contribute to Fcgamma receptor-dependent neutralization. When antibodies elicited by immunization of rabbits with protective-antigen-based anthrax vaccines were analyzed, we found that the magnitude of Fcgamma receptor-dependent neutralization observed in the J774A.1 cell-based assay was dependent on the concentration of protective antigen utilized in the assay. Our results suggest that the characteristics of the antibodies analyzed in the assay (e.g., species of origin, isotype, and subclass), as well as the assay design (e.g., cell type and protective antigen concentration), could significantly influence the extent to which Fcgamma receptor-dependent neutralization contributes to the total neutralization measured by anthrax toxin neutralization assays. These findings should be considered when interpreting anthrax toxin neutralization assay output.
Insights
Anthrax toxin neutralization assay results depend on cell type and assay design. Fc gamma receptor interactions significantly influence neutralization, impacting how vaccine efficacy is measured.
Area of Science:
- Immunology
- Vaccinology
Background:
- Anthrax toxin neutralization assays are crucial for evaluating antibody responses to anthrax vaccines.
- Understanding the mechanisms of neutralization, particularly Fc gamma receptor involvement, is essential for accurate assay interpretation.
Purpose of the Study:
- To investigate the role and magnitude of Fc gamma receptor-dependent neutralization in anthrax toxin neutralization assays.
- To determine how cell type and assay parameters influence Fc gamma receptor-mediated neutralization.
Main Methods:
- Comparison of J774A.1 and RAW 264.7 cell-based assays for Fc gamma receptor-dependent neutralization.
- Flow cytometry to quantify Fc gamma receptor expression on cell lines.
- Use of Fc gamma receptor blocking monoclonal antibodies to identify contributing receptor classes.
- Analysis of rabbit anti-anthrax vaccine antibodies.
Main Results:
- J774A.1 cells exhibited significantly higher Fc gamma receptor-dependent neutralization than RAW 264.7 cells, correlating with greater Fc gamma receptor expression.
- Murine Fc gamma receptor classes IIB, III, and IV were identified as contributors to neutralization.
- Neutralization in the J774A.1 assay was dependent on protective antigen concentration.
- Antibody characteristics (species, isotype, subclass) and assay design (cell type, antigen concentration) influence Fc gamma receptor-dependent neutralization.
Conclusions:
- The extent of Fc gamma receptor-dependent neutralization in anthrax toxin assays is significantly influenced by the chosen cell type.
- Specific Fc gamma receptor classes play a role in antibody-mediated toxin neutralization.
- Assay design parameters critically affect the measurement of functional antibody levels, necessitating careful consideration during interpretation.
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