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Friday, December 24, 2021

Omicron extensively but incompletely escapes Pfizer BNT162b2 neutralization

 

  • Sandile Cele , 
  • Laurelle Jackson , 
  •  

  • Alex Sigal


  • PDF: https://media.nature.com/original/magazine-assets/d41586-021-03824-5/d41586-021-03824-5.pdf

    ADVANCE ARTICLE PREVIEW

    This manuscript has been peer reviewed and accepted for publication in Nature and is provided in this format here as a response to the exceptional public-health crisis. This accepted manuscript will continue through the processes of copy editing and formatting to publication of a finalized version of record on nature.com. Please note there may be errors present in this version, which may affect the content, and all legal disclaimers apply.

    The emergence of Omicron (Pango lineage B.1.1.529), first identified in Botswana and South Africa, may compromise vaccine effectiveness and lead to re-infections1. We investigated whether Omicron escapes antibody neutralization in South Africans vaccinated with Pfizer BNT162b2. We also investigated if Omicron requires the ACE2 receptor to infect cells. We isolated and sequence confirmed live Omicron virus from an infected person in South Africa and compared plasma neutralization of Omicron relative to an ancestral SARS-CoV-2 strain, observing that Omicron still required ACE2 to infect. For neutralization, blood samples were taken soon after vaccination from participants who were vaccinated and previously infected or vaccinated with no evidence of previous infection. Neutralization of ancestral virus was much higher in infected and vaccinated versus vaccinated only participants but both groups showed a 22-fold escape from vaccine elicited neutralization by the Omicron variant. However, in the previously infected and vaccinated group, the level of residual neutralization of Omicron was similar to the level of neutralization of ancestral virus observed in the vaccination only group. These data support the notion that, provided high neutralization capacity is elicited by vaccination/boosting approaches, reasonable effectiveness against Omicron may be maintained.

    https://www.nature.com/articles/d41586-021-03824-5

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