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A multiplexed Cas13-based assay with point-of-care attributes for simultaneous COVID-19 diagnosis and variant surveillance
Point-of-care (POC) nucleic acid detection technologies are poised to aid gold-standard technologies in controlling the COVID-19 pandemic, yet shortcomings in the capability to perform critically needed complex detection—such as multiplexed detection for viral variant surveillance—may limit their wi...
Autores principales: | , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , |
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Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
2022
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Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7614457/ https://www.ncbi.nlm.nih.gov/pubmed/36367987 http://dx.doi.org/10.1089/crispr.2022.0048 |
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author | Patchsung, Maturada Homchan, Aimorn Aphicho, Kanokpol Suraritdechachai, Surased Wanitchanon, Thanyapat Pattama, Archiraya Sappakhaw, Khomkrit Meesawat, Piyachat Wongsatit, Thanakrit Athipanyasilp, Artittaya Jantarug, Krittapas Athipanyasilp, Niracha Buahom, Juthamas Visanpattanasin, Supapat Niljianskul, Nootaree Chaiyen, Pimchai Tinikul, Ruchanok Wichukchinda, Nuanjun Mahasirimongkol, Surakameth Sirijatuphat, Rujipas Angkasekwinai, Nasikarn Crone, Michael A. Freemont, Paul S. Joung, Julia Ladha, Alim Abudayyeh, Omar Gootenberg, Jonathan Zhang, Feng Chewapreecha, Claire Chanarat, Sittinan Horthongkham, Navin Pakotiprapha, Danaya Uttamapinant, Chayasith |
author_facet | Patchsung, Maturada Homchan, Aimorn Aphicho, Kanokpol Suraritdechachai, Surased Wanitchanon, Thanyapat Pattama, Archiraya Sappakhaw, Khomkrit Meesawat, Piyachat Wongsatit, Thanakrit Athipanyasilp, Artittaya Jantarug, Krittapas Athipanyasilp, Niracha Buahom, Juthamas Visanpattanasin, Supapat Niljianskul, Nootaree Chaiyen, Pimchai Tinikul, Ruchanok Wichukchinda, Nuanjun Mahasirimongkol, Surakameth Sirijatuphat, Rujipas Angkasekwinai, Nasikarn Crone, Michael A. Freemont, Paul S. Joung, Julia Ladha, Alim Abudayyeh, Omar Gootenberg, Jonathan Zhang, Feng Chewapreecha, Claire Chanarat, Sittinan Horthongkham, Navin Pakotiprapha, Danaya Uttamapinant, Chayasith |
author_sort | Patchsung, Maturada |
collection | PubMed |
description | Point-of-care (POC) nucleic acid detection technologies are poised to aid gold-standard technologies in controlling the COVID-19 pandemic, yet shortcomings in the capability to perform critically needed complex detection—such as multiplexed detection for viral variant surveillance—may limit their widespread adoption. Herein, we developed a robust multiplexed CRISPR-based detection using LwaCas13a and PsmCas13b to simultaneously diagnose SARS-CoV-2 infection and pinpoint the causative SARS-CoV-2 variant of concern (VOC)—including globally dominant VOCs Delta (B.1.617.2) and Omicron (B.1.1.529)—all while maintaining high levels of accuracy upon the detection of multiple SARS-CoV-2 gene targets. The platform has several attributes suitable for POC use: premixed, freeze-dried reagents for easy use and storage; convenient direct-to-eye or smartphone-based readouts; and a one-pot variant of the multiplexed detection. To reduce reliance on proprietary reagents and enable sustainable use of such a technology in low- and middle-income countries, we locally produced and formulated our own recombinase polymerase amplification reaction and demonstrated its equivalent efficiency to commercial counterparts. Our tool—CRISPR-based detection for simultaneous COVID-19 diagnosis and variant surveillance which can be locally manufactured—may enable sustainable use of CRISPR diagnostics technologies for COVID-19 and other diseases in POC settings. |
format | Online Article Text |
id | pubmed-7614457 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2022 |
record_format | MEDLINE/PubMed |
spelling | pubmed-76144572023-04-19 A multiplexed Cas13-based assay with point-of-care attributes for simultaneous COVID-19 diagnosis and variant surveillance Patchsung, Maturada Homchan, Aimorn Aphicho, Kanokpol Suraritdechachai, Surased Wanitchanon, Thanyapat Pattama, Archiraya Sappakhaw, Khomkrit Meesawat, Piyachat Wongsatit, Thanakrit Athipanyasilp, Artittaya Jantarug, Krittapas Athipanyasilp, Niracha Buahom, Juthamas Visanpattanasin, Supapat Niljianskul, Nootaree Chaiyen, Pimchai Tinikul, Ruchanok Wichukchinda, Nuanjun Mahasirimongkol, Surakameth Sirijatuphat, Rujipas Angkasekwinai, Nasikarn Crone, Michael A. Freemont, Paul S. Joung, Julia Ladha, Alim Abudayyeh, Omar Gootenberg, Jonathan Zhang, Feng Chewapreecha, Claire Chanarat, Sittinan Horthongkham, Navin Pakotiprapha, Danaya Uttamapinant, Chayasith CRISPR J Article Point-of-care (POC) nucleic acid detection technologies are poised to aid gold-standard technologies in controlling the COVID-19 pandemic, yet shortcomings in the capability to perform critically needed complex detection—such as multiplexed detection for viral variant surveillance—may limit their widespread adoption. Herein, we developed a robust multiplexed CRISPR-based detection using LwaCas13a and PsmCas13b to simultaneously diagnose SARS-CoV-2 infection and pinpoint the causative SARS-CoV-2 variant of concern (VOC)—including globally dominant VOCs Delta (B.1.617.2) and Omicron (B.1.1.529)—all while maintaining high levels of accuracy upon the detection of multiple SARS-CoV-2 gene targets. The platform has several attributes suitable for POC use: premixed, freeze-dried reagents for easy use and storage; convenient direct-to-eye or smartphone-based readouts; and a one-pot variant of the multiplexed detection. To reduce reliance on proprietary reagents and enable sustainable use of such a technology in low- and middle-income countries, we locally produced and formulated our own recombinase polymerase amplification reaction and demonstrated its equivalent efficiency to commercial counterparts. Our tool—CRISPR-based detection for simultaneous COVID-19 diagnosis and variant surveillance which can be locally manufactured—may enable sustainable use of CRISPR diagnostics technologies for COVID-19 and other diseases in POC settings. 2022-11-11 2022-11-11 /pmc/articles/PMC7614457/ /pubmed/36367987 http://dx.doi.org/10.1089/crispr.2022.0048 Text en https://creativecommons.org/licenses/by/4.0/This work is licensed under a CC BY 4.0 (https://creativecommons.org/licenses/by/4.0/) International license. |
spellingShingle | Article Patchsung, Maturada Homchan, Aimorn Aphicho, Kanokpol Suraritdechachai, Surased Wanitchanon, Thanyapat Pattama, Archiraya Sappakhaw, Khomkrit Meesawat, Piyachat Wongsatit, Thanakrit Athipanyasilp, Artittaya Jantarug, Krittapas Athipanyasilp, Niracha Buahom, Juthamas Visanpattanasin, Supapat Niljianskul, Nootaree Chaiyen, Pimchai Tinikul, Ruchanok Wichukchinda, Nuanjun Mahasirimongkol, Surakameth Sirijatuphat, Rujipas Angkasekwinai, Nasikarn Crone, Michael A. Freemont, Paul S. Joung, Julia Ladha, Alim Abudayyeh, Omar Gootenberg, Jonathan Zhang, Feng Chewapreecha, Claire Chanarat, Sittinan Horthongkham, Navin Pakotiprapha, Danaya Uttamapinant, Chayasith A multiplexed Cas13-based assay with point-of-care attributes for simultaneous COVID-19 diagnosis and variant surveillance |
title | A multiplexed Cas13-based assay with point-of-care attributes for simultaneous COVID-19 diagnosis and variant surveillance |
title_full | A multiplexed Cas13-based assay with point-of-care attributes for simultaneous COVID-19 diagnosis and variant surveillance |
title_fullStr | A multiplexed Cas13-based assay with point-of-care attributes for simultaneous COVID-19 diagnosis and variant surveillance |
title_full_unstemmed | A multiplexed Cas13-based assay with point-of-care attributes for simultaneous COVID-19 diagnosis and variant surveillance |
title_short | A multiplexed Cas13-based assay with point-of-care attributes for simultaneous COVID-19 diagnosis and variant surveillance |
title_sort | multiplexed cas13-based assay with point-of-care attributes for simultaneous covid-19 diagnosis and variant surveillance |
topic | Article |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7614457/ https://www.ncbi.nlm.nih.gov/pubmed/36367987 http://dx.doi.org/10.1089/crispr.2022.0048 |
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