生物
病毒学
接种疫苗
免疫学
病毒
流感疫苗
血凝素(流感)
甲型流感病毒
免疫系统
灭活疫苗
疫苗效力
病毒释放
作者
David R. McIlwain,Han Chen,Zainab Rahil,Neda Hajiakhoond Bidoki,Sizun Jiang,Zach B. Bjornson,Nikita Kolhatkar,Carlos Martínez,Brice Gaudilliere,Julien Hedou,Nilanjan Mukherjee,Christian M. Schürch,Angelica Trejo,Melton B. Affrime,Bonnie Bock,Kenneth Kim,David Liebowitz,Nima Aghaeepour,Sean N. Tucker,Garry P. Nolan
标识
DOI:10.1016/j.chom.2021.10.009
摘要
Developing new influenza vaccines with improved performance and easier administration routes hinges on defining correlates of protection. Vaccine-elicited cellular correlates of protection for influenza in humans have not yet been demonstrated. A phase-2 double-blind randomized placebo and active (inactivated influenza vaccine) controlled study provides evidence that a human-adenovirus-5-based oral influenza vaccine tablet (VXA-A1.1) can protect from H1N1 virus challenge in humans. Mass cytometry characterization of vaccine-elicited cellular immune responses identified shared and vaccine-type-specific responses across B and T cells. For VXA-A1.1, the abundance of hemagglutinin-specific plasmablasts and plasmablasts positive for integrin α4β7, phosphorylated STAT5, or lacking expression of CD62L at day 8 were significantly correlated with protection from developing viral shedding following virus challenge at day 90 and contributed to an effective machine learning model of protection. These findings reveal the characteristics of vaccine-elicited cellular correlates of protection for an oral influenza vaccine.
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