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◆ Vaccine2026-09-18

A mucosal prime-systemic boost strategy using a glycoengineered bacterial membrane vesicle vaccine elicits protective mucosal immunity against pneumococci in mice.

Ryoma Nakao, Hiroki Uchiyama, Takehiro Yamaguchi, Kimihiro Abe, Aoi Takahashi, Manami Kimijima, Eisuke Kuroda, Shigeto Hamaguchi, Toshifumi Kudo, Yukihiro Akeda

原始摘要(英文原文)· Original abstract
Prime-boost vaccination using different administration routes may enhance protective immunity compared with homologous regimens. Here, we evaluated all eight possible three-dose combinations of intranasal (IN) and subcutaneous (SC) immunization using a glycoengineered membrane vesicle vaccine derived from probiotic Escherichia coli and displaying pneumococcal capsular polysaccharide. This self-adjuvanting vaccine platform induced robust humoral responses regardless of administration route. While all regimens elicited serum IgG responses, only IN-IN-IN, IN-IN-SC, and SC-IN-IN induced strong mucosal SIgA responses and enhanced pneumococcal clearance in the nasal cavity. Among these, the heterologous IN-IN-SC regimen generated the balanced mucosal and systemic immunity and exhibited the highest opsonophagocytic activity. These findings support route optimization as a practical strategy for maximizing the efficacy of glycoengineered membrane vesicle vaccines.
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A mucosal prime-systemic boost strategy using a glycoengineered bacterial membrane vesicle vaccine elicits protective mucosal immunity against pneumococci in mice. — 科研速览 Science Skim