| Literature DB >> 35318422 |
Jia Hu1, Xiang Chen2, Xingbing Lu3, Lijuan Wu3, Liyuan Yin4, Lingling Zhu4, Hao Liang4, Feng Xu4, Qinghua Zhou5.
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Year: 2022 PMID: 35318422 PMCID: PMC8938633 DOI: 10.1038/s41423-022-00847-4
Source DB: PubMed Journal: Cell Mol Immunol ISSN: 1672-7681 Impact factor: 22.096
Fig. 1Development of efficient neutralizing antibodies for Omicron variant. A Flow chart of the construction and panning of the scFv phage display library. B The pie chart shows that 192 clones were selected for ELISA; the top 50 clones according to OD value were then sequenced. C To verify whether the antibodies produced specifically bind to S2, 293 T cells were transfected with each scFv expression plasmid. After 48 h, the cells were incubated with biotinylated RBD or S2. Finally, binding between antibodies and S2 was detected by flow cytometry. D HXLC-031 efficiently neutralizes Omicron variant pseudovirus. Omicron variant pseudovirus was incubated with 10-fold serially diluted S2-specific antibodies. The mixtures were mixed with Huh-7 cells. After 48 h of incubation, the neutralization rate of each antibody was evaluated using a luciferase assay system. E The chart shows the IC50 of S2-specific antibodies (HXLC-027, HXLC-031 and HXLC-032) for SARS-CoV-2 and variant (beta, delta and submicron) pseudoviruses. F CDR3-H and CDR3-L show the amino acid sequences of CDR3 for both chains of the antibodies HXLC-027 and HXLC-032