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The whole-cell pertussis vaccine imposes a broad effector B cell response in mouse heterologous prime-boost settings
Viviana Valeri, Akhésa Sochon, Clara Cousu, Pascal Chappert, Damiana Lecoeuche, Pascal Blanc, Jean-Claude Weill, Claude-Agnès Reynaud
Viviana Valeri, Akhésa Sochon, Clara Cousu, Pascal Chappert, Damiana Lecoeuche, Pascal Blanc, Jean-Claude Weill, Claude-Agnès Reynaud
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Research Article Immunology Vaccines

The whole-cell pertussis vaccine imposes a broad effector B cell response in mouse heterologous prime-boost settings

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Abstract

ÍSince the introduction of new generation pertussis vaccines, resurgence of pertussis has been observed in many developed countries. Former whole-cell pertussis (wP) vaccines are able to protect against disease and transmission but have been replaced in several industrialized countries because of their reactogenicity and adverse effects. Current acellular pertussis (aP) vaccines, made of purified proteins of Bordetella pertussis, are efficient at preventing disease but fail to induce long-term protection from infection. While the systemic and mucosal T cell immunity induced by the 2 types of vaccines has been well described, much less is known concerning B cell responses. Taking advantage of an inducible activation-induced cytidine deaminase fate-mapping mouse model, we compared effector and memory B cells induced by the 2 classes of vaccines and showed that a stronger and broader memory B cell and plasma cell response was achieved by a wP prime. We also observed that homologous or heterologous vaccine combinations that include at least 1 wP administration, even as a booster dose, were sufficient to induce this broad effector response, thus highlighting its dominant imprint on the B cell profile. Finally, we describe the settlement of memory B cell populations in the lung following subcutaneous wP prime vaccination.

Authors

Viviana Valeri, Akhésa Sochon, Clara Cousu, Pascal Chappert, Damiana Lecoeuche, Pascal Blanc, Jean-Claude Weill, Claude-Agnès Reynaud

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Figure 2

The wP prime leads to stronger GC and memory B cell responses in dLNs.

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The wP prime leads to stronger GC and memory B cell responses in dLNs.
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(A) AID-Cre-EYFP mice primed either with aP or wP vaccines or controls injected with alum (ctr) received 2 doses of tamoxifen at days 7 and 10 after prime vaccination. Mice were analyzed at days 14 and 30. (B) B220+EYFP+ live cells from dLNs of mice primed with aP and wP vaccines were distinguished into GC (GL7+) and memory (GL7–) B cells, by flow cytometry. (C) Total EYFP+ GC and EYFP+ memory B cell counts in the 2 dLNs are shown in the graphs. (D) A representative flow cytometry profile of heavy chain isotype distribution among EYFP+GL7+ B cells is shown for the aP and wP conditions at day 30 after prime. (E) IgM/IgD, IgG1, IgG2, and IgA distribution in the EYFP+ GC and memory subsets from mice analyzed at day 30 after prime are shown in the plots. Each point represents an individual mouse analyzed at day 14 or day 30 after prime vaccination. At least 2 independent experiments were performed for each analysis. Means (±SEM) are shown. Kruskal-Wallis analysis with uncorrected Dunn’s test was performed to compare the different conditions at each time point or each Ab isotype. *P < 0.05, **P < 0.01, ***P < 0.001, ****P < 0.0001.

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ISSN 2379-3708

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