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Induction of lung mucosal immunity by a next-generation inhaled aerosol COVID-19 vaccine: an open-label, multi-arm phase 1 clinical trial

Nature Communications. 2025-07; 
Mangalakumari Jeyanathan, Sam Afkhami, Michael R D'Agostino, Imran Satia, Dominik K Fritz, Kate Miyasaki, Jann C Ang, Anna Zganiacz, Karen J Howie, Marilyn Swinton, Emilio Aguirre, Michael B Zheng, Natallia Kazhdan, Anna Dvorkin-Gheva, Lawrence Mbuagbaw, Maria Fe C Medina, Nermin Diab, Danica L Brister, Gail M Gauvreau, Brian D Lichty, Matthew S Miller, Fiona Smaill, Zhou Xing McMaster Immunology Research Centre, McMaster University, Hamilton, ON, Canada
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Abstract

The current COVID-19 vaccines are suboptimal against the evolving SARS-CoV-2 variants, particularly in high-risk populations. A next-generation vaccine strategy capable of effective induction of respiratory mucosal immunity remains to be clinically developed. Here, we report an open-label, multi-arm phase 1 study (NCT05094609) to evaluate a multi-antigenic COVID-19 vaccine delivered once via inhaled aerosol to the lung of intramuscular mRNA-vaccinated humans without or with prior SARS-CoV-2 infection (uninfected vs infected). Escalating doses of a human adenoviral (HuAd)-vectored or chimpanzee Ad (ChAd)-vectored vaccine are evaluated in the uninfected cohort. A selected Ad vaccine is further evaluated in the in... More

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