Nasal vaccination of beta7 integrin-deficient mice retains elevated IgA immunity
- Maślanka, Tomasz
- Clapp, Beata
- Hoffman, Carol
- Robison, Amanda [ Montana State University: Microbiology & Cell Biology ]
- Gregorczyk, Izabela
- Pascual, David W.
Understanding the migration of lymphocytes to nonintestinal mucosal sites is fundamental to developing mucosal vaccination strategies. Studies have shown that nasal and oral immunization with cholera toxin (CT) stimulates, in addition to α4β7+, the induction of αE (CD103)β7+ B cells. To determine the extent to which αEâ€associated β7 contributes to antigen (Ag)â€specific IgA responses in the upper respiratory tract, nasal CT vaccination was performed in wildâ€type (wt) and β7â€/†mice. At 16 days postâ€primary immunization, upper respiratory tract IgA responses were greater in β7â€/†mice than in wt mice. IgA induction by distal β7â€/†Peyer's patches (PPs), mesenteric LNs (MLNs), and small intestinal lamina propia (iLP) was minimal, in contrast to elevated gut IgA responses in wt mice. By 42 days postâ€primary immunization, β7â€/†gut IgA responses were restored, and upper respiratory tract Agâ€specific IgA responses were equivalent to those of wt mice. Examination of homing receptor expression and cellâ€sorting experiments revealed that β7â€/†mice have increased usage of β1 and αE integrins by upper respiratory tract B cells suggesting that alternative integrins can facilitate lymphocyte migration to the upper respiratory tract, especially in the absence of β7.