Systematic evaluation of SARS‐CoV‐2 antigens enables a highly specific and sensitive multiplex serological COVID‐19 assay

Sophia Hober(KTH Royal Institute of Technology), Cecilia Hellström(Science for Life Laboratory), Jennie Olofsson(Science for Life Laboratory), Eni Andersson(Science for Life Laboratory), Sofia Bergström(Science for Life Laboratory), August Jernbom Falk(Science for Life Laboratory), Shaghayegh Bayati(Science for Life Laboratory), Sára Mravinacová(Science for Life Laboratory), Ronald Sjöberg(Science for Life Laboratory), Jamil Yousef(Science for Life Laboratory), Lovisa Skoglund(Science for Life Laboratory), Sara Kanje(KTH Royal Institute of Technology), Anna Berling(KTH Royal Institute of Technology), Anne‐Sophie Svensson(KTH Royal Institute of Technology), Gabriella Jensen(KTH Royal Institute of Technology), Henric Enstedt(KTH Royal Institute of Technology), Delaram Afshari(KTH Royal Institute of Technology), Lan Xu(KTH Royal Institute of Technology), Martin Zwahlen(Science for Life Laboratory), Kalle von Feilitzen(Science for Life Laboratory), Leo Hanke(Karolinska Institutet), Ben Murrell(Karolinska Institutet), Gerald M. McInerney(Karolinska Institutet), Gunilla B. Karlsson Hedestam(Karolinska Institutet), Christofer Lendel(KTH Royal Institute of Technology), Robert Roth(AstraZeneca (Sweden)), Ingmar Skoog(University of Gothenburg), Elisabet Svenungsson(Karolinska University Hospital), Tomas Olsson(Karolinska Institutet), Anna Fogdell‐Hahn(Karolinska Institutet), Ylva Lindroth(Lund University), Maria Lundgren, Kimia T. Maleki(Public Health Agency of Sweden), Nina Lagerqvist(Public Health Agency of Sweden), Jonas Klingström(Public Health Agency of Sweden), Rui Da Silva Rodrigues(Karolinska University Hospital), Sandra Muschiol(Karolinska University Hospital), Gordana Bogdanović(Karolinska University Hospital), Laila Sara Arroyo Mühr(Karolinska Institutet), Carina Eklund(Karolinska University Hospital), Camilla Lagheden(Karolinska University Hospital), Joakim Dillner(Karolinska University Hospital), Åsa Sivertsson(KTH Royal Institute of Technology), Sebastian Havervall(Karolinska Institutet), Charlotte Thålin(Karolinska Institutet), Hanna Tegel(KTH Royal Institute of Technology), Elisa Pin(Science for Life Laboratory), Anna Månberg(Science for Life Laboratory), My Hedhammar(KTH Royal Institute of Technology), Peter Nilsson(Science for Life Laboratory)
Clinical & Translational Immunology
January 1, 2021
Cited by 37Open Access
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Abstract

OBJECTIVE: The COVID-19 pandemic poses an immense need for accurate, sensitive and high-throughput clinical tests, and serological assays are needed for both overarching epidemiological studies and evaluating vaccines. Here, we present the development and validation of a high-throughput multiplex bead-based serological assay. METHODS: More than 100 representations of SARS-CoV-2 proteins were included for initial evaluation, including antigens produced in bacterial and mammalian hosts as well as synthetic peptides. The five best-performing antigens, three representing the spike glycoprotein and two representing the nucleocapsid protein, were further evaluated for detection of IgG antibodies in samples from 331 COVID-19 patients and convalescents, and in 2090 negative controls sampled before 2020. RESULTS: Three antigens were finally selected, represented by a soluble trimeric form and the S1-domain of the spike glycoprotein as well as by the C-terminal domain of the nucleocapsid. The sensitivity for these three antigens individually was found to be 99.7%, 99.1% and 99.7%, and the specificity was found to be 98.1%, 98.7% and 95.7%. The best assay performance was although achieved when utilising two antigens in combination, enabling a sensitivity of up to 99.7% combined with a specificity of 100%. Requiring any two of the three antigens resulted in a sensitivity of 99.7% and a specificity of 99.4%. CONCLUSION: These observations demonstrate that a serological test based on a combination of several SARS-CoV-2 antigens enables a highly specific and sensitive multiplex serological COVID-19 assay.


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