Transcriptional signatures of influenza A/H1N1-specific IgG memory-like B cell response in older individuals.

Transcriptional signatures of influenza A/H1N1-specific IgG memory-like B cell response in older individuals.
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老年人甲型/H1N1 流感特异性 IgG 记忆样 B 细胞反应的转录特征。

DOI:
10.1016/j.vaccine.2016.06.034
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发表时间:
2016-07-25
期刊:
影响因子:
5.5
通讯作者:
Poland GA
Poland GA
中科院分区:
医学3区
文献类型:
--
作者:
Haralambieva IH;Ovsyannikova IG;Kennedy RB;Zimmermann MT;Grill DE;Oberg AL;Poland GA

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研究表明,对甲型H1N1流感病毒的基于回忆的体液免疫应答起源于激活的记忆B细胞。本研究的目的是鉴定与流感疫苗接种后记忆B细胞应答相关的基线、早期和晚期血液转录特征(在外周血单核细胞/PBMC中)。我们对159名受试者(50-74岁)接种含有A/加州/7/2009/H1N1样病毒的季节性三价流感疫苗后的样本进行了接种前和接种后mRNA-Seq转录谱分析,并进行了惩罚回归建模,以确定与接种后流感A/H1N1特异性记忆B细胞ELISPOT反应的相关性。基因组和基因(p值范围为7.92E-08至0.00018,q值范围为0.00019至0.039),证明存在显著相关性(基因表达水平)与记忆B细胞反应的关系表明代谢的重要性(胆固醇和脂质代谢相关),细胞迁移/粘附,MAP激酶,流感疫苗接种后记忆B细胞应答发展中的NF-κ B细胞信号传导(趋化因子/细胞因子信号传导)和转录调控基因特征。通过无偏倚的全转录组分析方法,我们的研究确定了流感疫苗接种后记忆B细胞应答的特征,突出了代谢变化(在其他免疫功能相关事件中)在流感疫苗诱导的免疫记忆调节中未被充分认识的作用。
Studies suggest that the recall-based humoral immune responses to influenza A/H1N1 originates from activated memory B cells. The aim of this study was to identify baseline, early and late blood transcriptional signatures (in peripheral blood mononuclear cells/PBMCs) associated with memory B cell response following influenza vaccination. We used pre- and post-vaccination mRNA-Seq transcriptional profiling on samples from 159 subjects (50–74 years old) following receipt of seasonal trivalent influenza vaccine containing the A/California/7/2009/H1N1-like virus, and penalized regression modeling to identify associations with influenza A/H1N1-specific memory B cell ELISPOT response after vaccination. Genesets and genes (p-value range 7.92E-08 to 0.00018, q-value range 0.00019 to 0.039) demonstrating significant associations (of gene expression levels) with memory B cell response suggest the importance of metabolic (cholesterol and lipid metabolism-related), cell migration/adhesion, MAP kinase, NF-kB cell signaling (chemokine/cytokine signaling) and transcriptional regulation gene signatures in the development of memory B cell response after influenza vaccination. Through an unbiased transcriptome-wide profiling approach, our study identified signatures of memory B cell response following influenza vaccination, highlighting the underappreciated role of metabolic changes (among the other immune function-related events) in the regulation of influenza vaccine-induced immune memory.
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