Multiplexed CRISPR-based microfluidic platform for clinical testing of respiratory viruses and SARS-CoV-2 variants

Author:

Welch N.L.ORCID,Zhu M.,Hua C.,Weller J.,Mirhashemi M. Ezzaty,Mantena S.,Nguyen T.G.,Shaw B.M.,Ackerman C.M.,Thakku S.G.,Tse M.W.,Kehe J.,Bauer M.R.,Uwera M-M.,Eversley J.S.,Bielwaski D.A.,McGrath G.,Braidt J.,Johnson J.,Cerrato F.,Petros B.A.,Gionet G.L.,Jalbert S.K.,Cleary M.L.,Siddle K.J.ORCID,Happi C.T.,Hung D.T.,Springer M.ORCID,MacInnis B.L.,Lemieux J.E.,Rosenberg E.,Branda J.A.,Blainey P.C.ORCID,Sabeti P.C.,Myhrvold C

Abstract

AbstractThe COVID-19 pandemic has demonstrated a clear need for high-throughput, multiplexed, and sensitive assays for detecting SARS-CoV-2 and other respiratory viruses as well as their emerging variants. Here, we present microfluidic CARMEN (mCARMEN), a cost-effective virus and variant detection platform that combines CRISPR-based diagnostics and microfluidics with a streamlined workflow for clinical use. We developed the mCARMEN respiratory virus panel (RVP) and demonstrated its diagnostic-grade performance on 533 patient specimens in an academic setting and then 166 specimens in a clinical setting. We further developed a panel to distinguish 6 SARS-CoV-2 variant lineages, including Delta and Omicron, and evaluated it on 106 patient specimens, with near-perfect concordance to sequencing-based variant classification. Lastly, we implemented a combined Cas13 and Cas12 approach that enables quantitative measurement of viral copies in samples. mCARMEN enables high-throughput surveillance of multiple viruses and variants simultaneously.

Publisher

Cold Spring Harbor Laboratory

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