Gold Nanoparticle-Mediated Lateral Flow Assays for Detection of Host Antibodies and COVID-19 Proteins.
Leila Safaee ArdekaniPeter Waaben ThulstrupPublished in: Nanomaterials (Basel, Switzerland) (2022)
Coronaviruses, that are now well-known to the public, include a family of viruses that can cause severe acute respiratory syndrome (SARS) and other respiratory diseases, such as Middle East respiratory syndrome (MERS). Severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2), the seventh member of this coronavirus family, was detected in 2019 and can cause a number of respiratory symptoms, from dry cough and fever to fatal viral pneumonia. Various diagnostic assays ranging from real-time polymerase chain reaction (RT-PCR) to point-of-care medical diagnostic systems have been developed for detection of viral components or antibodies targeting the virus. Point-of-care assays allow rapid diagnostic assessment of infectious patients. Such assays are ideally simple, low-cost, portable tests with the possibility for on-site field detection that do not require skilled staff, sophisticated equipment, or sample pretreatment, as compared to RT-PCR. Since early 2021 when new SARS-CoV-2 variants of concern increased, rapid tests became more crucial in the disease management cycle. Among rapid tests, gold nanoparticle (GNP)-based lateral flow assays (LFAs) have high capacity for performing at the bedside, paving the way to easy access to diagnosis results. In this review, GNP-based LFAs used for either COVID-19 proteins or human response antibodies are summarized and recommendations for their improvement have been suggested.
Keyphrases
- sars cov
- respiratory syndrome coronavirus
- loop mediated isothermal amplification
- high throughput
- low cost
- real time pcr
- sensitive detection
- healthcare
- end stage renal disease
- chronic kidney disease
- endothelial cells
- newly diagnosed
- label free
- respiratory tract
- case report
- emergency department
- copy number
- mental health
- physical activity
- intensive care unit
- drug delivery
- drug induced
- single cell
- dna methylation
- clinical practice
- mechanical ventilation