Terminally Differentiated Influenza-Specific Effector Memory B Cells Circulate after Live Attenuated Influenza Vaccination

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The study examined circulating influenza-specific IgDneg memory B cells after live attenuated influenza vaccination (LAIV) by profiling HA+ B cell populations in immunized patients who seroconverted, with the goal of identifying which circulating B-cell subsets predict systemic HA-IgG antibody responses. The authors found that LAIV elicits circulating T-bet+ HA+ IgDneg B cells with a phenotype similar to that seen after inactivated intramuscular vaccination (IIV), but the magnitude of these cells did not correlate with post-LAIV systemic HA-IgG responses. Analyses further showed that, unlike IIV, LAIV preferentially generates HA+ IgDneg B cells co-expressing TBX21 and the terminal effector gene Zeb2, and these T-bet+ cells could not be recalled as short-lived antibody-secreting cells after antigen re-challenge, indicating terminal differentiation. This paper does not explicitly discuss endometriosis or adenomyosis; it was included in the corpus via a keyword match in the upstream search index.

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Abstract

Live attenuated influenza vaccination (LAIV) is the only FDA approved mucosal vaccine. Easily assayed, circulating correlates of protection after LAIV are lacking. Using fluorochrome labeled hemagglutinin (HA) antigen, we previously identified a subset of HA-specific (HA + ) IgD neg memory B cells that circulate after inactivated intramuscular vaccination (IIV), express the master transcriptional regulator, T-bet, as well as effector memory genes and predict durable antibody (Ab) responses to IIV. Here we profile the circulating HA + IgD neg memory B cell response in a cohort of immunized patients who seroconvert after LAIV to identify which, if any, circulating HA + B cells predict antibody responses after LAIV. Although we report LAIV elicits circulating T-bet + HA + IgD neg B cells that are phenotypically similar to those we described after IIV, we find no correlation between the magnitude of these cells and systemic HA-IgG responses after LAIV. Supervised and unsupervised analyses demonstrate that unlike IIV, LAIV preferentially elicits circulating HA + IgD neg B cells that co-express TBX21 and the terminal effector cell gene, Zeb2 . Consistent with their terminal differentiation status, LAIV-elicited T-bet + cells cannot be recalled as short-lived antibody-secreting cells (ASCs) after systemic or mucosal antigen re-challenge. We conclude that the transcriptional profiles and functions of HA + IgD neg B cells vary by influenza vaccine platform.
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Abstract Live attenuated influenza vaccination (LAIV) is the only FDA approved mucosal vaccine. Easily assayed, circulating correlates of protection after LAIV are lacking. Using fluorochrome labeled hemagglutinin (HA) antigen, we previously identified a subset of HA-specific (HA+) IgDneg memory B cells that circulate after inactivated intramuscular vaccination (IIV), express the master transcriptional regulator, T-bet, as well as effector memory genes and predict durable antibody (Ab) responses to IIV. Here we profile the circulating HA+ IgDneg memory B cell response in a cohort of immunized patients who seroconvert after LAIV to identify which, if any, circulating HA+ B cells predict antibody responses after LAIV. Although we report LAIV elicits circulating T-bet+ HA+ IgDneg B cells that are phenotypically similar to those we described after IIV, we find no correlation between the magnitude of these cells and systemic HA-IgG responses after LAIV. Supervised and unsupervised analyses demonstrate that unlike IIV, LAIV preferentially elicits circulating HA+ IgDneg B cells that co-express TBX21 and the terminal effector cell gene, Zeb2. Consistent with their terminal differentiation status, LAIV-elicited T-bet+ cells cannot be recalled as short-lived antibody-secreting cells (ASCs) after systemic or mucosal antigen re-challenge. We conclude that the transcriptional profiles and functions of HA+ IgDneg B cells vary by influenza vaccine platform. Competing Interest Statement The authors have declared no competing interest.

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