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The Antigenicity of Epidemic SARS-CoV-2 Variants in the United Kingdom

Jiajing Wu, Li Zhang, Yue Zhang, Haixin Wang, Ruxia Ding, Jianhui Nie, Qianqian Li, Shuo Liu, Yongxin Yu, Xiaoming Yang, Kai Duan, Xiaowang Qu, Youchun Wang, Weijin Huang

2021Frontiers in Immunology27 citationsDOIOpen Access PDF

Abstract

To determine whether the neutralization activity of monoclonal antibodies, convalescent sera and vaccine-elicited sera was affected by the top five epidemic SARS-CoV-2 variants in the UK, including D614G+L18F+A222V, D614G+A222V, D614G+S477N, VOC-202012/01(B.1.1.7) and D614G+69-70del+N439K, a pseudovirus-neutralization assay was performed to evaluate the relative neutralization titers against the five SARS-CoV-2 variants and 12 single deconvolution mutants based on the variants. In this study, 18 monoclonal antibodies, 10 sera from convalescent COVID-19 patients, 10 inactivated-virus vaccine-elicited sera, 14 mRNA vaccine-elicited sera, nine RBD-immunized mouse sera, four RBD-immunized horse sera, and four spike-encoding DNA-immunized guinea pig sera were tested and analyzed. The N501Y, N439K, and S477N mutations caused immune escape from nine of 18 mAbs. However, the convalescent sera, inactivated virus vaccine-elicited sera, mRNA vaccine-elicited sera, spike DNA-elicited sera, and recombinant RBD protein-elicited sera could still neutralize these variants (within three-fold changes compared to the reference D614G variant). The neutralizing antibody responses to different types of vaccines were different, whereby the response to inactivated-virus vaccine was similar to the convalescent sera.

Topics & Concepts

NeutralizationVirologyAntigenicityAntibodyBiologyNeutralizing antibodyTiterVirusMonoclonal antibodyImmunologySARS-CoV-2 and COVID-19 ResearchCOVID-19 Clinical Research StudiesAnimal Virus Infections Studies
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