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人类对流感疫苗接种的T滤泡辅助细胞反应的时空发展

Spatiotemporal development of the human T follicular helper cell response to Influenza vaccination.

作者信息

Schattgen Stefan A, Turner Jackson S, Ghonim Mohamed A, Crawford Jeremy Chase, Schmitz Aaron J, Kim Hyunjin, Zhou Julian Q, Awad Walid, Kim Wooseob, McIntire Katherine M, Haile Alem, Klebert Michael K, Suessen Teresa, Middleton William D, Teefey Sharlene A, Presti Rachel M, Ellebedy Ali H, Thomas Paul G

机构信息

Department of Immunology, St Jude Children's Research Hospital, Memphis, TN, USA.

Department of Pathology and Immunology, Washington University School of Medicine, St Louis, MO, USA.

出版信息

bioRxiv. 2023 Aug 31:2023.08.29.555186. doi: 10.1101/2023.08.29.555186.

Abstract

We profiled blood and draining lymph node (LN) samples from human volunteers after influenza vaccination over two years to define evolution in the T follicular helper cell (TFH) response. We show LN TFH cells expanded in a clonal-manner during the first two weeks after vaccination and persisted within the LN for up to six months. LN and circulating TFH (cTFH) clonotypes overlapped but had distinct kinetics. LN TFH cell phenotypes were heterogeneous and mutable, first differentiating into pre-TFH during the month after vaccination before maturing into GC and IL-10+ TFH cells. TFH expansion, upregulation of glucose metabolism, and redifferentiation into GC TFH cells occurred with faster kinetics after re-vaccination in the second year. We identified several influenza-specific TFH clonal lineages, including multiple responses targeting internal influenza proteins, and show each TFH state is attainable within a lineage. This study demonstrates that human TFH cells form a durable and dynamic multi-tissue network.

摘要

我们对人类志愿者在两年内流感疫苗接种后的血液和引流淋巴结(LN)样本进行了分析,以确定滤泡辅助性T细胞(TFH)反应的演变情况。我们发现,接种疫苗后的前两周内,淋巴结TFH细胞以克隆方式扩增,并在淋巴结内持续存在长达六个月。淋巴结和循环TFH(cTFH)克隆型相互重叠,但动力学不同。淋巴结TFH细胞表型具有异质性且可变,接种疫苗后的一个月内首先分化为前TFH,然后成熟为生发中心(GC)和IL-10+ TFH细胞。在第二年再次接种疫苗后,TFH扩增、葡萄糖代谢上调以及重新分化为生发中心TFH细胞的动力学更快。我们鉴定出了几个流感特异性TFH克隆谱系,包括针对流感内部蛋白的多种反应,并表明每个TFH状态在一个谱系内都是可以实现的。这项研究表明,人类TFH细胞形成了一个持久且动态的多组织网络。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1f33/10491263/851383c73c26/nihpp-2023.08.29.555186v1-f0001.jpg

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