Diagnostic TR-FRET assays for detection of antibodies in patient samples

用于检测患者样本中抗体的诊断性 TR-FRET 检测

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作者:Hong Yue, Radosław P Nowak, Daan Overwijn, N Connor Payne, Stephanie Fischinger, Caroline Atyeo, Evan C Lam, Kerri St Denis, Lauren K Brais, Yoshinobu Konishi, Romanos Sklavenitis-Pistofidis, Lindsey R Baden, Eric J Nilles, Elizabeth W Karlson, Xu G Yu, Jonathan Z Li, Ann E Woolley, Irene M Ghobrial

Abstract

Serological assays are important diagnostic tools for surveying exposure to the pathogen, monitoring immune response post vaccination, and managing spread of the infectious agent among the population. Current serological laboratory assays are often limited because they require the use of specialized laboratory technology and/or work with a limited number of sample types. Here, we evaluate an alternative by developing time-resolved Förster resonance energy transfer (TR-FRET) homogeneous assays that exhibited exceptional versatility, scalability, and sensitivity and outperformed or matched currently used strategies in terms of sensitivity, specificity, and precision. We validated the performance of the assays measuring total immunoglobulin G (IgG) levels; antibodies against severe acute respiratory syndrome coronavirus (SARS-CoV) or Middle Eastern respiratory syndrome (MERS)-CoV spike (S) protein; and SARS-CoV-2 S and nucleocapsid (N) proteins and applied it to several large sample sets and real-world applications. We further established a TR-FRET-based ACE2-S competition assay to assess the neutralization propensity of the antibodies. Overall, these TR-FRET-based serological assays can be rapidly extended to other antigens and are compatible with commonly used plate readers.

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