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Influenza vaccination features revealed by a single‐cell transcriptome atlas

接种疫苗 免疫系统 免疫学 病毒学 流感疫苗 生物 外周血单个核细胞 转录组 病毒 医学 基因 基因表达 体外 遗传学
作者
Yi Wang,Xiaoxia Wang,Xinbei Jia,Jieqiong Li,Jin Fu,Xiaolan Huang,Xiaodai Cui,Bike Wang,Wenkai Luo,Chengcong Lin,Zhenjun Li,Laurence Don Wai Luu,Shijun Li,Xiong Zhu,Jun Tai
出处
期刊:Journal of Medical Virology [Wiley]
卷期号:95 (1): e28174-e28174 被引量:15
标识
DOI:10.1002/jmv.28174
摘要

Emerging and re-emerging viruses like influenza virus pose a continuous global public health threat. Vaccines are one of the most effective public health strategies for controlling infectious diseases. However, little is known about the immunological features of vaccination at the single-cell resolution, including for influenza vaccination. Here, we report the single-cell transcriptome atlas of longitudinally collected peripheral blood mononuclear cells (PBMCs) in individuals immunized with an inactivated influenza vaccine. Overall, vaccination with the influenza vaccine only had a small impact on the composition of peripheral immune cells, but elicited global transcriptional changes in multiple immune cell subsets. In plasma and B cell subsets, transcriptomic changes, which were mostly involved in antibody production as well as B cell activation and differentiation, were observed after influenza vaccinations. In influenza-vaccinated individuals, we found a reduction in multiple biological processes (e.g., interferon response, inflammatory response, HLA-I/II molecules, cellular apoptosis, migration, and cytotoxicity, etc.,) 7 days postvaccination in multiple immune cell subsets. However, 14 days postvaccination, these levels returned to similar levels observed in prevaccination samples. Additionally, we did not observe significant upregulation of pro-inflammatory response genes and key thrombosis-related genes in influenza-vaccinated individuals. Taken together, we report a cell atlas of the peripheral immune response to influenza vaccination and provide a resource for understanding the immunological response mechanisms of influenza vaccination.
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