Why the study?
Does subcutaneous inactivated poliovirus immunization induce gut-derived poliovirus-specific cellular immune responses in orally pre-immunized donors?
Does subcutaneous inactivated poliovirus immunization induce gut-derived poliovirus-specific cellular immune responses in orally pre-immunized donors?
Subcutaneous IPV in orally pre-immunized donors induces a transient increase in gut-derived poliovirus-specific CD4+ T cells in the blood, demonstrating the utility of whole-blood assays for monitoring vaccination success.
May inform monitoring of cellular vaccine responses with whole-blood assays; leaves open whether gut-homing T cells confer enhanced mucosal protection.
Mucosal infections are prevented by a specialized local immune system. Immune cells of this compartment can also be found in the blood and are characterized by the expression of mucosa-specific homing molecules. Here, the cellular immune responses after inactivated poliovirus immunization (IPV) in poliovirus orally pre-immunized donors were investigated. Subcutaneous IPV induced a transient increase in the proliferative response against poliovirus antigen and in the number of poliovirus-specific CD4(+) T cells in the blood of the vaccinees. These cells were characterized to be of the effector memory type (CD45RA(-)/CD45RO(+)/CCR7(-)/CD27(+)) and expressed the homing molecule alpha(4)beta(7), indicating their origin from the gut. Together these data show the recurrence of gut-derived poliovirus-specific cells upon IPV and evaluate the whole-blood assay as a powerful tool for monitoring the success of a vaccination.
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Krieg et al. (2004) studied this question.
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