Accelerated antibody discovery targeting the SARS-CoV-2 spike protein for COVID-19 therapeutic potential

Author:

Mullen Tracey E1,Abdullah Rashed1,Boucher Jacqueline1,Brousseau Anna Susi1,Dasuri Narayan K1,Ditto Noah T2,Doucette Andrew M1,Emery Chloe1,Gabriel Justin1,Greamo Brendan1,Patil Ketan S1,Rothenberger Kelly1,Stolte Justin1,Souders Colby A1

Affiliation:

1. Antibody Discovery, Abveris Inc., 480 Neponset St, Ste 10B, Canton, MA 02021, USA

2. Product Development, Carterra, 825 N 300 W c309, Salt Lake City, UT 84103, USA

Abstract

Abstract Background Rapid deployment of technologies capable of high-throughput and high-resolution screening is imperative for timely response to viral outbreaks. Risk mitigation in the form of leveraging multiple advanced technologies further increases the likelihood of identifying efficacious treatments in aggressive timelines. Methods In this study, we describe two parallel, yet distinct, in vivo approaches for accelerated discovery of antibodies targeting the severe acute respiratory syndrome coronavirus-2 spike protein. Working with human transgenic Alloy-GK mice, we detail a single B-cell discovery workflow to directly interrogate antibodies secreted from plasma cells for binding specificity and ACE2 receptor blocking activity. Additionally, we describe a concurrent accelerated hybridoma-based workflow utilizing a DiversimAb™ mouse model for increased diversity. Results The panel of antibodies isolated from both workflows revealed binding to distinct epitopes with both blocking and non-blocking profiles. Sequence analysis of the resulting lead candidates uncovered additional diversity with the opportunity for straightforward engineering and affinity maturation. Conclusions By combining in vivo models with advanced integration of screening and selection platforms, lead antibody candidates can be sequenced and fully characterized within one to three months.

Publisher

Oxford University Press (OUP)

Subject

Immunology,Immunology and Allergy

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