A SARS-CoV-2 variant‑adjusted threshold of protection model for monoclonal antibody pre-exposure prophylaxis against COVID-19.

Edge, Rhiannon; Matthews, Sam; Ahani, Bahar; Aksyuk, Anastasia A; Clegg, Lindsay; Perez, John L; Esser, Mark T; Chang, Lee-Jah et al. · Nat Commun · 2025

rct · Level II

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Abstract

Clinical development of monoclonal antibodies (mAbs) against severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2) is challenging due to rapid changes in the variant landscape. This study identified a threshold model for neutralising antibody (nAb) titres associated with clinically relevant protection against symptomatic COVID-19 for vulnerable populations. Using efficacy data from the phase 3 PROVENT pre-exposure prophylaxis trial of tixagevimab-cilgavimab (NCT04625725), individual nAb ID<sub>50</sub> titres were predicted by dividing serum mAb concentration by prevalence-adjusted tixagevimab-cilgavimab potency (from in vitro IC<sub>50</sub> values combined with viral surveillance data) and related to efficacy with a Cox model. The Threshold of Protection (ToP) Cox model was externally validated using data from the phase 3 SUPERNOVA trial (NCT05648110), which assessed sipavibart efficacy against symptomatic COVID-19 in immunocompromised participants. The PROVENT ToP model estimated the variant-specific observed efficacies from SUPERNOVA for 3 and 6 months post any dose with Lin's concordance of 0.86 and 0.75, respectively. This approach integrates predicted nAb ID<sub>50</sub> titres against multiple SARS-CoV-2 variants into a ToP model that can be applied across different variants and could serve as a surrogate endpoint in immunobridging studies to expedite clinical evaluation and regulatory approval for mAbs targeting SARS-CoV-2.

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