Multiplexed Lateral Flow Assay Integrated with Orthogonal Crispr-Cas System for Sars-Cov-2 Detection

26 Pages Posted: 13 Jun 2022

See all articles by Gaoxing Su

Gaoxing Su

Nantong University

Min Zhu

Nantong University

Diyuan Li

Nantong University

Mengting Xu

Nantong University

Yuedong Zhu

Nantong University

Yan Zhang

Nantong University

Hongyan Zhu

Nantong University

Feng Li

affiliation not provided to SSRN

Yanyan Yu

Nantong University

Abstract

The development of field-deployable detection platform amenable for multiplexed genes testing will significantly improve the efficiency and reliability during point-of-care testing (POCT) applications. In this regard, an orthogonal CRISPR-Cas-mediated multiplexed lateral flow assay (designated as OC-MLFA) is proposed for SARS-CoV-2 genome detection. Taking the advantage of activation and cleavage preferences between Cas12a and Cas13a, orthogonal (two-independent-channel signal readout) CRISPR-Cas system is investigated. Lateral flow strips with two target lines are designed to accommodate the orthogonal CRISPR system. The interference between Cas12a and Cas13a channels can be effectively eliminated via the elaborate nucleic acids and lateral flow strips design. The high preamplification efficiency from reverse transcription recombinase polymerase amplification (RT-RPA) and Cas enzyme mediated trans-cleavage process bring the sensitivity of our OC-MLFA method to 10 copies per test (30 µL). Nasopharyngeal swab clinical samples with different cycle threshold (Ct) values according to the RT-PCR method were analyzed with the proposed OC-MLFA, during which 100% detection accuracy was obtained. Featured with the multiplexed genes detection simultaneously in one reaction and colorimetric readout through single strip, the OC-MLFA we proposed herein ensures great accuracy and efficiency, which endows promising field-deployable POCT application feasibility.

Keywords: SARS-CoV-2, CRISPR-Cas, Lateral Flow Assay, Multiplexed detection

Suggested Citation

Su, Gaoxing and Zhu, Min and Li, Diyuan and Xu, Mengting and Zhu, Yuedong and Zhang, Yan and Zhu, Hongyan and Li, Feng and Yu, Yanyan, Multiplexed Lateral Flow Assay Integrated with Orthogonal Crispr-Cas System for Sars-Cov-2 Detection. Available at SSRN: https://ssrn.com/abstract=4135371 or http://dx.doi.org/10.2139/ssrn.4135371

Gaoxing Su

Nantong University ( email )

40 Qingnian E Rd
Chongchuan Qu, Nantong Shi
Jiangsu Sheng, 226000
China

Min Zhu

Nantong University ( email )

40 Qingnian E Rd
Chongchuan Qu, Nantong Shi
Jiangsu Sheng, 226000
China

Diyuan Li

Nantong University ( email )

40 Qingnian E Rd
Chongchuan Qu, Nantong Shi
Jiangsu Sheng, 226000
China

Mengting Xu

Nantong University ( email )

40 Qingnian E Rd
Chongchuan Qu, Nantong Shi
Jiangsu Sheng, 226000
China

Yuedong Zhu

Nantong University ( email )

40 Qingnian E Rd
Chongchuan Qu, Nantong Shi
Jiangsu Sheng, 226000
China

Yan Zhang

Nantong University ( email )

40 Qingnian E Rd
Chongchuan Qu, Nantong Shi
Jiangsu Sheng, 226000
China

Hongyan Zhu

Nantong University ( email )

40 Qingnian E Rd
Chongchuan Qu, Nantong Shi
Jiangsu Sheng, 226000
China

Feng Li

affiliation not provided to SSRN ( email )

Yanyan Yu (Contact Author)

Nantong University ( email )

40 Qingnian E Rd
Chongchuan Qu, Nantong Shi
Jiangsu Sheng, 226000
China

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