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Generation of Escape Variants of Neutralizing Influenza Virus Monoclonal Antibodies
Published on: August 29, 2017
BA.1, BA.2 and BA.2.75 variants show comparable replication kinetics, reduced impact on epithelial barrier and elicit
Janmejay Singh1, Anbalagan Anantharaj1, Aleksha Panwar1
1Bioassay Laboratory and Clinical and Cellular Virology Laboratory, Translational Health Science and Technology Institute, Faridabad, Haryana, India.
Abstract:
The Omicron variant of SARS-CoV-2 is capable of infecting unvaccinated, vaccinated and previously-infected individuals due to its ability to evade neutralization by antibodies. With multiple sub-lineages of Omicron emerging in the last 12 months, there is inadequate information on the quantitative antibody response generated upon natural infection with Omicron variant and whether these antibodies offer cross-protection against other sub-lineages of Omicron variant. In this study, we characterized the growth kinetics of Kappa, Delta and Omicron variants of SARS-CoV-2 in Calu-3 cells. Relatively higher amounts infectious virus titers, cytopathic effect and disruption of epithelial barrier functions was observed with Delta variant whereas infection with Omicron sub-lineages led to a more robust induction of interferon pathway, lower level of virus replication and mild effect on epithelial barrier. The replication kinetics of BA.1, BA.2 and BA.2.75 sub-lineages of the Omicron variant were comparable in cell culture and natural infection in a subset of individuals led to a significant increase in binding and neutralizing antibodies to the Delta variant and all the three sub-lineages of Omicron but the level of neutralizing antibodies were lowest against the BA.2.75 variant. Finally, we show that Cu2+, Zn2+ and Fe2+ salts inhibited in vitro RdRp activity but only Cu2+ and Fe2+ inhibited both the Delta and Omicron variants in cell culture. Thus, our results suggest that high levels of interferons induced upon infection with Omicron variant may counter virus replication and spread. Waning neutralizing antibody titers rendered subjects susceptible to infection by Omicron variants and natural Omicron infection elicits neutralizing antibodies that can cross-react with other sub-lineages of Omicron and other variants of concern.
Insights
Natural Omicron infection boosts antibodies against various SARS-CoV-2 variants, including its own sub-lineages. However, antibody levels are lowest against the BA.2.75 Omicron sub-lineage, indicating potential for reinfection.
Area of Science:
- Virology
- Immunology
- Infectious Diseases
Background:
- The Omicron variant of SARS-CoV-2 evades antibodies, leading to infections in vaccinated and unvaccinated individuals.
- Emerging Omicron sub-lineages necessitate understanding antibody responses and cross-protection after natural infection.
Purpose of the Study:
- To compare the growth kinetics of SARS-CoV-2 variants (Kappa, Delta, Omicron sub-lineages) in cell culture.
- To quantify the antibody response following natural Omicron infection and assess cross-protection against other variants.
- To evaluate the in vitro antiviral activity of metal salts.
Main Methods:
- Cell culture experiments to assess viral growth kinetics and cytopathic effects.
- Measurement of binding and neutralizing antibodies in individuals after Omicron infection.
- In vitro inhibition assays using metal salts (Cu2+, Zn2+, Fe2+) against viral RdRp activity and cell culture variants.
Main Results:
- Omicron infection induced robust interferon response with lower replication and milder epithelial barrier disruption compared to Delta.
- Replication kinetics of Omicron sub-lineages (BA.1, BA.2, BA.2.75) were similar in cell culture.
- Natural Omicron infection increased antibodies against Delta and Omicron sub-lineages, but neutralizing antibody levels were lowest against BA.2.75.
- Copper (Cu2+) and Iron (Fe2+) salts inhibited Delta and Omicron variants in cell culture.
Conclusions:
- High interferon induction by Omicron may limit its replication and spread.
- Waning neutralizing antibodies increase susceptibility to Omicron reinfection.
- Natural Omicron infection elicits cross-reactive neutralizing antibodies against other SARS-CoV-2 variants and sub-lineages.
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