Rapid colorimetric detection of COVID-19 coronavirus using a reverse transcriptional loop-mediated isothermal amplification (RT-LAMP) diagnostic platform: iLACO

Lin Yu(Shenyang University of Chemical Technology), Shanshan Wu(Shenyang University of Chemical Technology), Xiaowen Hao(Huazhong University of Science and Technology), Xuelong Li(Shenyang Center for Disease Control and Prevention), Xi-Yang Liu, Sheng‐Long Ye, Heng Han(Shenyang University of Chemical Technology), Xue Dong(Shenyang Center for Disease Control and Prevention), Xin Li(Shenyang Center for Disease Control and Prevention), Jiyao Li(Shenyang Center for Disease Control and Prevention), Na Liu(Shenyang Center for Disease Control and Prevention), Jianmin Liu(Shenyang Center for Disease Control and Prevention), Wanzhong Zhang(Shenyang University of Chemical Technology), Vicent Pelechano(Science for Life Laboratory), Wei‐Hua Chen(Jiangxi University of Science and Technology), Xiushan Yin(Science for Life Laboratory)
medRxiv
February 24, 2020
Cited by 127Open Access
Full Text

Abstract

Abstract The recent outbreak of a novel coronavirus SARS-CoV-2 (also known as 2019-nCoV) threatens global health, given serious cause for concern. SARS-CoV-2 is a human-to-human pathogen that caused fever, severe respiratory disease and pneumonia (known as COVID-19). By press time, more than 70,000 infected people had been confirmed worldwide. SARS-CoV-2 is very similar to the severe acute respiratory syndrome (SARS) coronavirus broke out 17 years ago. However, it has increased transmissibility as compared with the SARS-CoV, e.g. very often infected individuals without any symptoms could still transfer the virus to others. It is thus urgent to develop a rapid, accurate and onsite diagnosis methods in order to effectively identify these early infects, treat them on time and control the disease spreading. Here we developed an isothermal LAMP based method-iLACO ( i sothermal LA MP based method for CO VID-19) to amplify a fragment of the ORF1ab gene using 6 primers. We assured the species-specificity of iLACO by comparing the sequences of 11 related viruses by BLAST (including 7 similar coronaviruses, 2 influenza viruses and 2 normal coronaviruses). The sensitivity is comparable to Taqman based qPCR detection method, detecting synthesized RNA equivalent to 10 copies of 2019-nCoV virus. Reaction time varied from 15-40 minutes, depending on the loading of virus in the collected samples. The accuracy, simplicity and versatility of the new developed method suggests that iLACO assays can be conveniently applied with for 2019-nCoV threat control, even in those cases where specialized molecular biology equipment is not available.


Related Papers

No related papers found

Powered by citation graph analysis