Induction of ICOS + CXCR3 + CXCR5 + T H Cells Correlates with Antibody Responses to Influenza Vaccination

Индукция ICOS+CXCR3+CXCR5+ T<sub>H</sub>-клеток коррелирует с антительным ответом на вакцинацию против гриппа
Salah-Eddine Bentebibel, Santiago M. C. Lopez, Gerlinde Obermoser, Nathalie Schmitt, Cynthia Mueller, Carson Harrod, Emilio Flaño, Asunción Mejías, Randy A. Albrecht, Derek Blankenship, Hui Xu, Virginia Pascual, Jacques Banchereau, Adolfo García‐Sastre, A. Karolina Palucka, Octavio Ramilo, Hideki Ueno
2013-03-13

ICOS+CXCR3+CXCR5+ CD4+ T cellscirculating memory T follicular helper cellsmemory B cell differentiationprotective antibody responsesseasonal influenza vaccination
Seasonal influenza vaccine protects 60 to 90% of healthy young adults from influenza infection. The immunological events that lead to the induction of protective antibody responses remain poorly understood in humans. We identified the type of CD4+ T cells associated with protective antibody responses after seasonal influenza vaccinations. The administration of trivalent split-virus influenza vaccines induced a temporary increase of CD4+ T cells expressing ICOS, which peaked at day 7, as did plasmablasts. The induction of ICOS was largely restricted to CD4+ T cells coexpressing the chemokine receptors CXCR3 and CXCR5, a subpopulation of circulating memory T follicular helper cells. Up to 60% of these ICOS+CXCR3+CXCR5+CD4+ T cells were specific for influenza antigens and expressed interleukin-2 (IL-2), IL-10, IL-21, and interferon-γ upon antigen stimulation. The increase of ICOS+CXCR3+CXCR5+CD4+ T cells in blood correlated with the increase of preexisting antibody titers, but not with the induction of primary antibody responses. Consistently, purified ICOS+CXCR3+CXCR5+CD4+ T cells efficiently induced memory B cells, but not naïve B cells, to differentiate into plasma cells that produce influenza-specific antibodies ex vivo. Thus, the emergence of blood ICOS+CXCR3+CXCR5+CD4+ T cells correlates with the development of protective antibody responses generated by memory B cells upon seasonal influenza vaccination.
1
ICOS induction was largely confined to ICOS+CXCR3+CXCR5+ CD4+ circulating memory T follicular helper cells.
2
Purified ICOS+CXCR3+CXCR5+ CD4+ T cells promoted influenza-specific plasma-cell differentiation from memory, but not naïve, B cells ex vivo.
3
Seasonal influenza vaccination temporarily increased ICOS-expressing CD4+ T cells, peaking on day 7 alongside plasmablast expansion.
4
The increase in ICOS+CXCR3+CXCR5+ CD4+ T cells correlated with boosting preexisting antibody titers, but not primary antibody responses.
5
Up to 60% of ICOS+CXCR3+CXCR5+ CD4+ T cells recognized influenza antigens and produced IL-2, IL-10, IL-21, and interferon-γ.

ICOS+CXCR3+CXCR5+CD4+ circulating memory T follicular helper cells induced by seasonal influenza vaccination

Their induction, antigen-specific cytokine production, correlation with protective antibody responses, and ability to drive influenza-specific plasma-cell differentiation of memory B cells

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2013-03-13
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Salah-Eddine Bentebibel
Santiago M. C. Lopez
Gerlinde Obermoser
Nathalie Schmitt
Cynthia Mueller
Carson Harrod
Emilio Flaño
Asunción Mejías
Randy A. Albrecht
Derek Blankenship
Hui Xu
Virginia Pascual
Jacques Banchereau
Adolfo García‐Sastre
A. Karolina Palucka
Octavio Ramilo
Hideki Ueno
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