Microfluidic characterisation reveals broad range of SARS-CoV-2 antibody affinity in human plasma

Author:

Schneider Matthias M1ORCID,Emmenegger Marc2ORCID,Xu Catherine K1,Condado Morales Itzel2ORCID,Meisl Georg1,Turelli Priscilla3ORCID,Zografou Chryssa2ORCID,Zimmermann Manuela R1ORCID,Frey Beat M4ORCID,Fiedler Sebastian5ORCID,Denninger Viola5,Jacquat Raphaël PB1ORCID,Madrigal Lidia2,Ilsley Alison5ORCID,Kosmoliaptsis Vasilis67ORCID,Fiegler Heike5,Trono Didier3ORCID,Knowles Tuomas PJ18,Aguzzi Adriano2ORCID

Affiliation:

1. Centre for Misfolding Diseases, Yusuf Hamied Department of Chemistry, University of Cambridge, Lensfield Road, Cambridge, UK

2. Institute of Neuropathology, University of Zurich, Zurich, Switzerland

3. School of Life Sciences, École Polytechnique Fédérale de Lausanne, Lausanne, Switzerland

4. Regional Blood Transfusion Service Zurich, Swiss Red Cross, Schlieren, Switzerland

5. Fluidic Analytics, Unit A, Paddocks Business Centre, Cambridge, UK

6. Department of Surgery, Addenbrooke’s Hospital, University of Cambridge, Cambridge, UK

7. National Institute for Health Research Blood and Transplant Research Unit in Organ Donation and Transplantation, University of Cambridge, Cambridge, UK

8. Cavendish Laboratory, Department of Physics, University of Cambridge, Cambridge, UK

Abstract

The clinical outcome of SARS-CoV-2 infections, which can range from asymptomatic to lethal, is crucially shaped by the concentration of antiviral antibodies and by their affinity to their targets. However, the affinity of polyclonal antibody responses in plasma is difficult to measure. Here we used microfluidic antibody affinity profiling (MAAP) to determine the aggregate affinities and concentrations of anti–SARS-CoV-2 antibodies in plasma samples of 42 seropositive individuals, 19 of which were healthy donors, 20 displayed mild symptoms, and 3 were critically ill. We found that dissociation constants, Kd, of anti–receptor-binding domain antibodies spanned 2.5 orders of magnitude from sub-nanomolar to 43 nM. Using MAAP we found that antibodies of seropositive individuals induced the dissociation of pre-formed spike-ACE2 receptor complexes, which indicates that MAAP can be adapted as a complementary receptor competition assay. By comparison with cytopathic effect–based neutralisation assays, we show that MAAP can reliably predict the cellular neutralisation ability of sera, which may be an important consideration when selecting the most effective samples for therapeutic plasmapheresis and tracking the success of vaccinations.

Funder

BBRSC

Frances and Augustus Newman Foundation

ERC PhyProt

Centre for Misfolding Diseases, Cambridge

St John’s College Cambridge

Herchel Smith Fund

Swiss FCS and the Forschungskredit of the University of Zurich

University of Zurich and the University Hospital of Zurich

Innovation Fund of the University Hospital Zurich

NOMIS Foundation

Schwyzer Winiker Stiftung and the Baugarten Stiftung

NIHR

Publisher

Life Science Alliance, LLC

Subject

Health, Toxicology and Mutagenesis,Plant Science,Biochemistry, Genetics and Molecular Biology (miscellaneous),Ecology

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