6533b838fe1ef96bd12a5295
RESEARCH PRODUCT
Distribution and phenotype of rotavirus-specific B cells induced during the antigen-driven primary response to 2/6 virus-like particles administered by the intrarectal and the intranasal routes.
Agathe OgierChristelle BassetAnnie CharpilienneCyrille Di MartinoDidier PoncetEvelyne Kohlisubject
RotavirusAntibodies ViralMicePeyer's Patches0302 clinical medicineCell MovementImmunology and AllergyMesenteric lymph nodes[ SDV.IMM ] Life Sciences [q-bio]/ImmunologyMesenteryAntigens ViralmucosaB-LymphocytesMice Inbred BALB C0303 health sciencesmedicine.diagnostic_testrodent3. Good healthIntestinesPhenotypemedicine.anatomical_structure[SDV.IMM]Life Sciences [q-bio]/ImmunologyFemaleAntibodyImmunologyReceptors Lymphocyte HomingBiologyCD5 AntigensFlow cytometryReceptors CCR03 medical and health sciencesImmune systemAntigenmedicineAnimalsImmunity MucosalAdministration IntranasalB cell030304 developmental biologyLumbosacral RegionRotavirus VaccinesCell BiologyvaccinationB-1 cellB-1a cellsImmunologybiology.proteinImmunizationLymph Nodescell traffickingCD5030215 immunologydescription
AbstractSelection of mucosal sites is an important step in mucosal vaccine development. The intrarectal (IR) route represents an alternative to the oral route of immunization; nevertheless, immune responses induced by this route are not well defined. Here, we studied the early primary B cell response (induction, homing, and phenotype) induced by IR immunization with rotavirus (RV)-2/6 virus-like particles (VLP). Using flow cytometry, we traced RV-specific B cells in different lymphoid tissues and analyzed the expression of α4β7 and CCR9, which are important receptors for homing to the gut, as well as CD5, a marker expressed by B1-a cells, which are a major source of natural antibodies. We observed a massive, specific B cell response in rectal follicles, lumbar, and mesenteric lymph nodes but not in Peyer’s patches or cervical lymph nodes. A minority of cells expressed α4β7, suggesting a probable lack of migration to the gut, whereas CCR9 and CD5 were expressed by 30–50% and 30–75% of specific B cells, respectively. Then, we compared the intranasal route of immunization and observed similar B cell frequency and phenotype but in respiratory lymphoid tissues. These results confirm the high compartmentalization of B cell responses within the mucosal system. They show that CCR9 expression, conversely to α4β7, is not restricted to B cells induced in the gut. Finally, an important part of the RV-specific B cell response induced at the mucosal level during the primary response to VLP is most likely a result of B1-a cells.
year | journal | country | edition | language |
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2007-10-01 |