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Maternal acellular pertussis vaccination in mice impairs cellular immunity to Bordetella pertussis infection in offspring
Violaine Dubois, Jonathan Chatagnon, Manon Depessemier, Camille Locht
Violaine Dubois, Jonathan Chatagnon, Manon Depessemier, Camille Locht
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Research Article Infectious disease Vaccines

Maternal acellular pertussis vaccination in mice impairs cellular immunity to Bordetella pertussis infection in offspring

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Abstract

Given the resurgence of pertussis, several countries have introduced maternal tetanus, diphtheria, and acellular pertussis (aP) vaccination during pregnancy to protect young infants against severe pertussis. Although protective against the disease, the effect of maternal aP vaccination on bacterial colonization of the offspring is unknown. Here, we used a mouse model to demonstrate that maternal aP immunization, either before or during pregnancy, protects pups from lung colonization by Bordetella pertussis. However, maternal aP vaccination resulted in significantly prolonged nasal carriage of B. pertussis by inhibiting the natural recruitment of IL-17–producing resident memory T cells and ensuing neutrophil influx in the nasal tissue, especially of those with proinflammatory and cytotoxic properties. Prolonged nasal carriage after aP vaccination is due to IL-4 signaling, as prolonged nasal carriage is abolished in IL-4Rα–/– mice. The effect of maternal aP vaccination can be transferred transplacentally to the offspring or via breastfeeding and is long-lasting, as it persists into adulthood. Maternal aP vaccination may, thus, augment the B. pertussis reservoir.

Authors

Violaine Dubois, Jonathan Chatagnon, Manon Depessemier, Camille Locht

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Figure 5

Effect of maternal aP immunization on the natural induction of Th17 cells in secondary lymphoid tissues.

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Effect of maternal aP immunization on the natural induction of Th17 cell...
(A) Absolute numbers of T cells (left panel), CD4+ (middle panel), and CD8+ T cells in the spleen of aP (red dots) and control (black dots) offspring 28 dpc. (B) Representative plots showing the expression of CD11a and CD44 on splenic T cells (upper panel) and expression of IL-17 and IFN-γ upon stimulation with PMA and ionomycin (lower panel) by splenic T cells from pups born to control (Ctr) or aP-vaccinated (aP) mothers. (C) Absolute numbers of splenic CD4+ (left panel) and CD8+ T cells expressing CD44 and CD11a from pups born to control (Ctr) or aP-vaccinated (aP) mothers. (D) Percentages of activated splenic CD4+ (left panel) and CD8+ (right panel) T cells from pups born to control (Ctr) or aP-vaccinated (aP) mothers producing IL-17 and/or IFN-γ. (E) Absolute numbers of splenic CD44+CD11a+CD4+ and CD44+CD11a+CD8+ T cells expressing IL-17 (left panel), IFN-γ (right panel), or both (middle panel). Results shown are geometric means ± SD. n = 5. Mann-Whitney tests were performed to compare Ctr and aP offspring. *P < 0.05; **P < 0.01.

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