免疫系统
获得性免疫系统
昼夜节律
淋巴结
接种疫苗
免疫
淋巴
免疫学
生物
生物钟
医学
神经科学
病理
作者
Louise M. Ince,Coline Barnoud,Lydia K. Lutes,Robert Pick,Chen Wang,Flore Sinturel,Chien-Sin Chen,Alba de Juan,Jasmin Weber,Stephan Holtkamp,Sophia Martina Hergenhan,Jennifer Geddes‐McAlister,Stefan Ebner,Paola Fontannaz,Benjamin Meyer,Maria Vono,Stéphane Jemelin,Charna Dibner,Claire‐Anne Siegrist,Felix Meissner
标识
DOI:10.1038/s41467-023-35979-2
摘要
Abstract The adaptive immune response is under circadian control, yet, why adaptive immune reactions continue to exhibit circadian changes over long periods of time is unknown. Using a combination of experimental and mathematical modeling approaches, we show here that dendritic cells migrate from the skin to the draining lymph node in a time-of-day-dependent manner, which provides an enhanced likelihood for functional interactions with T cells. Rhythmic expression of TNF in the draining lymph node enhances BMAL1-controlled ICAM-1 expression in high endothelial venules, resulting in lymphocyte infiltration and lymph node expansion. Lymph node cellularity continues to be different for weeks after the initial time-of-day-dependent challenge, which governs the immune response to vaccinations directed against Hepatitis A virus as well as SARS-CoV-2. In this work, we present a mechanistic understanding of the time-of-day dependent development and maintenance of an adaptive immune response, providing a strategy for using time-of-day to optimize vaccination regimes.
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