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Updated: Sep 23, 2026

Intranasal Administration of Recombinant Influenza Vaccines in Chimeric Mouse Models to Study Mucosal Immunity
Published on: June 25, 2015
Subcutaneous immunization with replication-competent live influenza virus confers durable protective immunity without
Zhoulang Wang1, Chengxing Zhou2, Lixin Yin3
1School of Pharmaceutical Sciences (Shenzhen), Shenzhen Campus of Sun Yat-sen University, Shenzhen 518107, China; Guangzhou National Laboratory, Guangzhou International Bio Island, Guangzhou 510005, China.
Abstract:
Current influenza vaccination strategies are constrained by the trade-off between the safety of inactivated platforms and the immunogenic potency of live attenuated vaccines. Here, we provide a comprehensive demonstration that subcutaneous (SC) immunization with a non-attenuated, replication-competent live influenza A virus (LIV) decouples immunogenicity from pathogenicity. Using a murine model, we show that a single high-dose SC immunization of A/Puerto Rico/8/34 (H1N1) elicited sterile pulmonary immunity against lethal challenge, significantly outperforming intramuscular delivery and inactivated vaccines. Biodistribution analysis confirms viral replication is transient (< 7 days) and strictly restricted to the injection site and draining lymph nodes, with no systemic dissemination to the lungs or central nervous system. Mechanistically, single-cell transcriptomics reveal that SC delivery triggers a localized type I interferon "firewall" that transitions into a robust germinal center (GC) reaction, fostering extensive plasma cell differentiation and superior memory B cell formation compared to phosphate-buffered saline (PBS)-treated controls. This regimen conferred 100% protection at 277 days post-immunization. Together, these findings establish peripheral LIV administration as a high-potency paradigm for next-generation rapid-response vaccines.

