» Articles » PMID: 36934093

PCR-like Performance of Rapid Test with Permselective Tunable Nanotrap

Abstract

Highly sensitive rapid testing for COVID-19 is essential for minimizing virus transmission, especially before the onset of symptoms and in asymptomatic cases. Here, we report bioengineered enrichment tools for lateral flow assays (LFAs) with enhanced sensitivity and specificity (BEETLES), achieving enrichment of SARS-CoV-2 viruses, nucleocapsid (N) proteins and immunoglobulin G (IgG) with 3-minute operation. The limit of detection is improved up to 20-fold. We apply this method to clinical samples, including 83% with either intermediate (35%) or low viral loads (48%), collected from 62 individuals (n = 42 for positive and n = 20 for healthy controls). We observe diagnostic sensitivity, specificity, and accuracy of 88.1%, 100%, and 91.9%, respectively, compared with commercial LFAs alone achieving 14.29%, 100%, and 41.94%, respectively. BEETLES, with permselectivity and tunability, can enrich the SARS-CoV-2 virus, N proteins, and IgG in the nasopharyngeal/oropharyngeal swab, saliva, and blood serum, enabling reliable and sensitive point-of-care testing, facilitating fast early diagnosis.

Citing Articles

Enhancing RT-PCR Throughput and Sensitivity through Large-Scale Sample Pooling Using a Nano-Hybrid Membrane.

Lee N, Kim K, Hong J, Lee S, Park J, Lee D Adv Sci (Weinh). 2025; 12(10):e2408771.

PMID: 39834032 PMC: 11904979. DOI: 10.1002/advs.202408771.


Biporous silica nanostructure-induced nanovortex in microfluidics for nucleic acid enrichment, isolation, and PCR-free detection.

Jeon E, Koo B, Kim S, Kim J, Yu Y, Jang H Nat Commun. 2024; 15(1):1366.

PMID: 38355558 PMC: 10866868. DOI: 10.1038/s41467-024-45467-w.

References
1.
Wyllie A, Fournier J, Casanovas-Massana A, Campbell M, Tokuyama M, Vijayakumar P . Saliva or Nasopharyngeal Swab Specimens for Detection of SARS-CoV-2. N Engl J Med. 2020; 383(13):1283-1286. PMC: 7484747. DOI: 10.1056/NEJMc2016359. View

2.
Seo G, Lee G, Kim M, Baek S, Choi M, Ku K . Rapid Detection of COVID-19 Causative Virus (SARS-CoV-2) in Human Nasopharyngeal Swab Specimens Using Field-Effect Transistor-Based Biosensor. ACS Nano. 2020; 14(4):5135-5142. DOI: 10.1021/acsnano.0c02823. View

3.
Quilty B, Clifford S, Hellewell J, Russell T, Kucharski A, Flasche S . Quarantine and testing strategies in contact tracing for SARS-CoV-2: a modelling study. Lancet Public Health. 2021; 6(3):e175-e183. PMC: 7826085. DOI: 10.1016/S2468-2667(20)30308-X. View

4.
Bloom J, Webb W . Lipid diffusibility in the intact erythrocyte membrane. Biophys J. 1983; 42(3):295-305. PMC: 1329238. DOI: 10.1016/S0006-3495(83)84397-5. View

5.
Cevik M, Tate M, Lloyd O, Maraolo A, Schafers J, Ho A . SARS-CoV-2, SARS-CoV, and MERS-CoV viral load dynamics, duration of viral shedding, and infectiousness: a systematic review and meta-analysis. Lancet Microbe. 2021; 2(1):e13-e22. PMC: 7837230. DOI: 10.1016/S2666-5247(20)30172-5. View