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首页> 外文期刊>Frontiers in Immunology >SARS-CoV-2 Spike-Specific CD4+ T Cell Response Is Conserved Against Variants of Concern, Including Omicron
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SARS-CoV-2 Spike-Specific CD4+ T Cell Response Is Conserved Against Variants of Concern, Including Omicron

机译:SARS-COV-2特异性CD4 + T细胞反应是针对关注的变种,包括omicron

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摘要

Although accumulating data have investigated the effect of SARS-CoV-2 mutations on antibody neutralizing activity, less is known about T cell immunity. In this work, we found that the ancestral (Wuhan strain) Spike protein can efficaciously reactivate CD4+ T cell memory in subjects with previous Alpha variant infection. This finding has practical implications, as in many countries only one vaccine dose is currently administered to individuals with previous COVID-19, independently of which SARS-CoV-2 variant was responsible of the infection. We also found that only a minority of Spike-specific CD4+ T cells targets regions mutated in Alpha, Beta and Delta variants, both after natural infection and vaccination. Finally, we found that the vast majority of Spike-specific CD4+ T cell memory response induced by natural infection or mRNA vaccination is conserved also against Omicron variant. This is of importance, as this newly emerged strain is responsible for a sudden rise in COVID-19 cases worldwide due to its increased transmissibility and ability to evade antibody neutralization. Collectively, these observations suggest that most of the memory CD4+ T cell response is conserved against SARS-CoV-2 variants of concern, providing an efficacious line of defense that can protect from the development of severe forms of COVID-19.
机译:尽管累积数据已经研究了SARS-COV-2突变对抗体中和活性的影响,但是关于T细胞免疫的较少。在这项工作中,我们发现祖先(武汉菌株)穗蛋白可以在具有先前α变体感染的受试者中有效地重新激活CD4 + T细胞记忆。这种发现具有实际意义,因为许多国家只有一种疫苗剂量目前施用于先前Covid-19的个体,其中独立于其中SARS-COV-2变体负责感染。我们还发现,在自然感染和疫苗接种后,只有少数穗状特异性CD4 + T细胞靶向α,β和δ变体中突变的区域。最后,我们发现,通过自然感染或mRNA疫苗接种诱导的绝大多数尖峰特异性CD4 + T细胞记忆响应也是针对omicron变异的。这是重要的,因为这种新出现的菌株是由于其增加的传播性和逃避抗体中和能力而导致全球Covid-19案例的突然增加。总的来说,这些观察结果表明,大多数记忆CD4 + T细胞响应都是针对SARS-COV-2的令人担忧的变体保守,提供有效的防御线,可以保护免受Covid-19的严重形式的发展。

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