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A Method to Assess Fc-mediated Effector Functions Induced by Influenza Hemagglutinin Specific Antibodies
Published on: February 23, 2018
Functional activity of an HIV-1 neutralizing IgG human monoclonal antibody: ADCC and complement-mediated lysis
M R Posner1, H S Elboim, T Cannon
1Department of Medicine, New England Deaconess Hospital, Boston, MA.
Insights
The human monoclonal antibody F105 effectively mediates antibody-dependent cellular cytotoxicity (ADCC) against HIV-1 infected cells via CD16+ peripheral blood monocytes (PBM). Unlike polyclonal sera, F105 demonstrates specific ADCC activity, highlighting its potential in HIV therapy.
Area of Science:
- Immunology
- Virology
- Oncology
Background:
- The human monoclonal antibody (HMAb) F105 targets the CD4 binding site of the HIV-1 envelope glycoprotein gp120.
- F105 neutralizes diverse HIV-1 strains at clinically achievable concentrations.
Purpose of the Study:
- To investigate the functional activity of F105 in antibody-dependent cellular cytotoxicity (ADCC) and complement-dependent cytotoxicity (CDC).
- To compare the ADCC mechanisms of F105 with polyclonal sera from HIV-seropositive donors.
Main Methods:
- Assessed ADCC and CDC activities of F105 and HIV-1 sera against an SF2-infected cell line.
- Utilized peripheral blood monocytes (PBM) as effector cells and rabbit/human sera as complement sources.
- Investigated the role of CD16 in ADCC using anti-CD16 antibodies and normal human serum.
Main Results:
- F105 and HIV-1 sera mediated ADCC against the SF2 strain, but neither mediated CDC.
- F105-mediated ADCC was completely abrogated by an anti-CD16 antibody, indicating dependence on CD16+ PBM.
- ADCC mediated by polyclonal HIV sera involved multiple effector cell populations, with only partial inhibition by anti-CD16.
Conclusions:
- F105 mediates ADCC specifically through CD16+ peripheral blood monocytes (PBM).
- This contrasts with polyclonal HIV sera, which utilize broader effector cell populations for ADCC.
- F105's targeted ADCC mechanism suggests potential therapeutic applications in HIV infection.
Abstract:
The IgG1 kappa, human monoclonal antibody (HMAb), F105, was studied for functional activity in antibody-dependent cellular cytotoxicity (ADCC) and complement-dependent cytotoxicity (CDC). F105 reacts with a discontinuous epitope on the CD4 binding site of the HIV-1 envelope glycoprotein, gp120, expressed on the surfaces of infected cells and neutralizes diverse viral strains at antibody concentrations readily achievable in humans. Neither F105 nor serum (diluted 1:50) from HIV seropositive donors mediate CDC against an SF2-infected cell line with rabbit or human sera as a source of complement. F105 and HIV-1 sera mediate ADCC against the SF2 strain. Normal human serum reduced spontaneous lysis of SF2 by peripheral blood monocytes (PBM). Although mixing of F105 with normal human serum reduced the lysis observed (36 +/- 8 vs. 42 +/- 8%), this still was significantly greater than lysis in media (30 +/- 5%) or normal human serum (23 +/- 6%) (p less than .05). A murine antibody to CD16 significantly reduced spontaneous lysis observed with media (30 +/- 5 vs. 18 +/- 3%) while normal mouse serum had no effect (31 +/- 7%). ADCC mediated by F105 is completely abrogated by the anti-CD16 antibody (42 +/- 8 vs. 22 +/- 4%), while only a fraction of ADCC mediated by HIV sera is inhibited by anti-CD16 (60 +/- 9 vs. 46 +/- 6%), suggesting that several populations of effector cells function in ADCC mediated by the polyclonal sera. Thus, F105, as opposed to polyclonal sera, mediates ADCC through a CD16+ PBM population.
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