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Protein-based lateral flow assays for COVID-19 detection

Farbod Mahmoudinobar, Dustin Britton, Jin Kim Montclare

2021Protein Engineering Design and Selection84 citationsDOIOpen Access PDF

Abstract

To combat the enduring and dangerous spread of COVID-19, many innovations to rapid diagnostics have been developed based on proteinprotein interactions of the SARS-CoV-2 spike and nucleocapsid proteins to increase testing accessibility. These antigen tests have most prominently been developed using the lateral flow assay (LFA) test platform which has the benefit of administration at point-of-care, delivering quick results, lower cost, and does not require skilled personnel. However, they have gained criticism for an inferior sensitivity. In the last year, much attention has been given to creating a rapid LFA test for detection of COVID-19 antigens that can address its high limit of detection while retaining the advantages of rapid antibodyantigen interaction. In this review, a summary of these proteinprotein interactions as well as the challenges, benefits, and recent improvements to protein based LFA for detection of COVID-19 are discussed.

Topics & Concepts

Coronavirus disease 2019 (COVID-19)Severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2)2019-20 coronavirus outbreakPoint-of-care testingComputer scienceVirologySensitivity (control systems)CriticismPoint of careComputational biologyBiologyMedicineEngineeringImmunologyElectronic engineeringPathologyDiseasePolitical scienceInfectious disease (medical specialty)OutbreakLawSARS-CoV-2 detection and testingBiosensors and Analytical DetectionAdvanced biosensing and bioanalysis techniques
Protein-based lateral flow assays for COVID-19 detection | Litcius