Low-Cost and Scalable Platform with Multiplexed Microwell Array Biochip for Rapid Diagnosis of COVID-19
Author(s) -
Yang Wang,
Kaiju Li,
Gaolian Xu,
Chuan Chen,
Guiqin Song,
Zaizai Dong,
Long Lin,
Yu Wang,
Zhiyong Xu,
Mingxia Yu,
Xinge Yu,
Binwu Ying,
Yubo Fan,
Lingqian Chang,
Jia Geng
Publication year - 2021
Publication title -
research
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.8
H-Index - 16
ISSN - 2639-5274
DOI - 10.34133/2021/2813643
Subject(s) - biochip , loop mediated isothermal amplification , covid-19 , chip , virology , computer hardware , nanotechnology , materials science , computational biology , computer science , medicine , biology , dna , pathology , infectious disease (medical specialty) , genetics , disease , outbreak , telecommunications
Sensitive detection of SARS-CoV-2 is of great importance for inhibiting the current pandemic of COVID-19. Here, we report a simple yet efficient platform integrating a portable and low-cost custom-made detector and a novel microwell array biochip for rapid and accurate detection of SARS-CoV-2. The instrument exhibits expedited amplification speed that enables colorimetric read-out within 25 minutes. A polymeric chip with a laser-engraved microwell array was developed to process the reaction between the primers and the respiratory swab RNA extracts, based on reverse transcriptase loop-mediated isothermal amplification (RT-LAMP). To achieve clinically acceptable performance, we synthesized a group of six primers to identify the conserved regions of the ORF1ab gene of SARS-CoV-2. Clinical trials were conducted with 87 PCR-positive and 43 PCR-negative patient samples. The platform demonstrated both high sensitivity (95.40%) and high specificity (95.35%), showing potentials for rapid and user-friendly diagnosis of COVID-19 among many other infectious pathogens.
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