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Protein-based, but not viral vector alone, HIV vaccine boosting drives an IgG1-biased polyfunctional humoral immune response
Stephanie Fischinger, Sally Shin, Carolyn M. Boudreau, Margaret Ackerman, Supachai Rerks-Ngarm, Punnee Pitisuttithum, Sorachai Nitayaphan, Jerome H. Kim, Merlin L. Robb, Nelson L. Michael, Robert J. O’Connell, Sandhya Vasan, Hendrik Streeck, Galit Alter
Stephanie Fischinger, Sally Shin, Carolyn M. Boudreau, Margaret Ackerman, Supachai Rerks-Ngarm, Punnee Pitisuttithum, Sorachai Nitayaphan, Jerome H. Kim, Merlin L. Robb, Nelson L. Michael, Robert J. O’Connell, Sandhya Vasan, Hendrik Streeck, Galit Alter
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Research Article AIDS/HIV Immunology

Protein-based, but not viral vector alone, HIV vaccine boosting drives an IgG1-biased polyfunctional humoral immune response

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Abstract

The RV144 HIV-1 vaccine trial results showed moderate reduction in viral infections among vaccinees as well as induction of antibody-dependent cellular cytotoxicity and vaccine-specific IgG and IgG3 responses directed at variable loop regions 1 and 2 of the HIV envelope protein. However, with the recent failure of the HVTN 702 clinical trial, comprehensive profiling of humoral immune responses may provide insight for these disappointing results. One of the changes included in the HVTN 702 study was the addition of a late boost, aimed at augmenting peak immunity and durability. The companion vaccine trial RV305 was designed to permit the evaluation of the immunologic impact of late boosting with either the boosting protein antigen alone, the canarypox viral vector ALVAC alone, or a combination of both. Although previous data showed elevated levels of IgG antibodies in both boosting arms, regardless of ALVAC-HIV vector incorporation, the effect on shaping antibody effector function remains unclear. Thus, here we analyzed the antibody and functional profile induced by RV305 boosting regimens and found that although IgG1 levels increased in both arms that included protein boosting, IgG3 levels were reduced compared with the original RV144 vaccine strategy. Most functional responses increased upon protein boosting, regardless of the viral vector-priming agent incorporation. These data suggest that the addition of a late protein boost alone is sufficient to increase functionally potent vaccine-specific antibodies previously associated with reduced risk of infection with HIV.

Authors

Stephanie Fischinger, Sally Shin, Carolyn M. Boudreau, Margaret Ackerman, Supachai Rerks-Ngarm, Punnee Pitisuttithum, Sorachai Nitayaphan, Jerome H. Kim, Merlin L. Robb, Nelson L. Michael, Robert J. O’Connell, Sandhya Vasan, Hendrik Streeck, Galit Alter

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Figure 2

Late boosting with AIDSVAX or ALVAC/AIDSVAX elevated ADNP, ADCD, and MIP-1β and resulted in more durable ADCP.

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Late boosting with AIDSVAX or ALVAC/AIDSVAX elevated ADNP, ADCD, and MIP...
(A) The dot plots show functional responses for the different vaccine groups against gp120 MN. Each dot represents one vaccinee. Data are shown as mean ± SEM. ADCP, PS, ADNP PS, ADCD, MFI, and ADNKA (percent positive NK cells for CD107a, IFN-γ, and MIP-1β) are depicted. Dotted lines indicate the average activity in the placebo vaccinees. (B) Heatmaps show Spearman’s correlations for each functional measurement with Luminex antibody levels for: RV144, combination, AIDSVAX, and ALVAC. The color indicates the Spearman r value: positive correlation (red), negative correlation with a Bonferroni’s adjustment for multiple comparisons (blue), *P < 0.05, **P < 0.01, ***P < 0.001, and ****P < 0.0001. (C) The dot plots show ADCP, ADNP, and ADCD over time, starting at week 0 (baseline), to week 26 (2 weeks post second boost) week 72 (durability time point). Each graph shows group 1 (dark red), 2 (orange), and 3 (yellow) for each function, and the same individuals are connected by lines. ADCD, antibody-dependent complement deposition; ADCP, Antibody-dependent cellular phagocytosis; ADNKA, antibody-dependent NK cell activation; ADNP, antibody-dependent neutrophil phagocytosis; PS, phagoscore.

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