Rapid and accurate nucleobase detection using FnCas9 and its application in COVID-19 diagnosis

TitleRapid and accurate nucleobase detection using FnCas9 and its application in COVID-19 diagnosis
Publication TypeJournal Article
Year of Publication2021
AuthorsAzhar, M, Phutela, R, Kumar, M, Ansari, AHussain, Rauthan, R, Gulati, S, Sharma, N, Sinha, D, Sharma, S, Singh, S, Acharya, S, Sarkar, S, Paul, D, Kathpalia, P, Aich, M, Sehgal, P, Ranjan, G, Bhoyar, RC, Singhal, K, Lad, H, Patra, PKumar, Makharia, G, Chandak, GRatan, Pesala, B, Chakraborty, D, Maiti, S, Epide, ICoV2 Genom
JournalBiosensors & Bioelectronics
Volume183
Pagination113207
Date PublishedJUL
Type of ArticleArticle
ISSN0956-5663
KeywordsCRISPRDx, FELUDA, FnCas9, LFA, SARS-CoV2, SNV detection
Abstract

Rapid detection of DNA/RNA pathogenic sequences or variants through point-of-care diagnostics is valuable for accelerated clinical prognosis, as witnessed during the recent COVID-19 outbreak. Traditional methods relying on qPCR or sequencing are tough to implement with limited resources, necessitating the development of accurate and robust alternative strategies. Here, we report FnCas9 Editor Linked Uniform Detection Assay (FELUDA) that utilizes a direct Cas9 based enzymatic readout for detecting nucleobase and nucleotide sequences without transcleavage of reporter molecules. We also demonstrate that FELUDA is 100% accurate in detecting single nucleotide variants (SNVs), including heterozygous carriers, and present a simple web-tool JATAYU to aid end-users. FELUDA is semi-quantitative, can adapt to multiple signal detection platforms, and deploy for versatile applications such as molecular diagnosis during infectious disease outbreaks like COVID-19. Employing a lateral flow readout, FELUDA shows 100% sensitivity and 97% specificity across all ranges of viral loads in clinical samples within 1hr. In combination with RT-RPA and a smartphone application True Outcome Predicted via Strip Evaluation (TOPSE), we present a prototype for FELUDA for CoV-2 detection closer to home.

DOI10.1016/j.bios.2021.113207
Type of Journal (Indian or Foreign)

Foreign

Impact Factor (IF)

10.257

Divison category: 
Organic Chemistry

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