BCG vaccination stimulates integrated organ immunity by feedback of the adaptive immune response to imprint prolonged innate antiviral resistance

卡介苗接种通过适应性免疫反应的反馈,刺激器官整合免疫,从而建立持久的先天性抗病毒抵抗力。

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作者:Audrey Lee,Katharine Floyd,Shengyang Wu,Zhuoqing Fang,Tze Kai Tan,Heather M Froggatt,John M Powers,Sarah R Leist,Kendra L Gully,Miranda L Hubbard,Chunfeng Li,Harold Hui,David Scoville,Alistaire D Ruggiero,Yan Liang,Anna Pavenko,Victor Lujan,Ralph S Baric,Garry P Nolan,Prabhu S Arunachalam,Mehul S Suthar,Bali Pulendran      0

Abstract

Bacille Calmette-Guérin (BCG) vaccination can confer nonspecific protection against heterologous pathogens. However, the underlying mechanisms remain mysterious. We show that mice vaccinated intravenously with BCG exhibited reduced weight loss and/or improved viral clearance when challenged with severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2 B.1.351) or PR8 influenza. Protection was first evident between 14 and 21 d post-vaccination and lasted ∼3 months. Notably, BCG induced a biphasic innate response and robust antigen-specific type 1 helper T cell (TH1 cell) responses in the lungs. MyD88 signaling was essential for innate and TH1 cell responses, and protection against SARS-CoV-2. Depletion of CD4+ T cells or interferon (IFN)-γ activity before infection obliterated innate activation and protection. Single-cell and spatial transcriptomics revealed CD4-dependent expression of IFN-stimulated genes in lung myeloid and epithelial cells. Notably, BCG also induced protection against weight loss after mouse-adapted SARS-CoV-2 BA.5, SARS-CoV and SHC014 coronavirus infections. Thus, BCG elicits integrated organ immunity, where CD4+ T cells feed back on tissue myeloid and epithelial cells to imprint prolonged and broad innate antiviral resistance.

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