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.

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