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Cited 850 time in webofscience Cited 938 time in scopus
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Rapid, low-cost detection of Zika virus using programmable biomolecular components SCIE SCOPUS

Title
Rapid, low-cost detection of Zika virus using programmable biomolecular components
Authors
Pardee, KeithGreen, Alexander A.Takahashi, Melissa K.Braff, DanaLambert, GuillaumeLee, Jeong WookFerrante, TomMa, DuoDonghia, NinaFan, MelinaDaringer, Nicole M.Bosch, IreneDudley, Dawn M.O'Connor, David H.Gehrke, LeeCollins, James J.
Date Issued
2016-05-19
Publisher
Cell Press
Abstract
The recent Zika virus outbreak highlights the need for low-cost diagnostics that can be rapidly developed for distribution and use in pandemic regions. Here, we report a pipeline for the rapid design, assembly, and validation of cell-free, paper-based sensors for the detection of the Zika virus RNA genome. By linking isothermal RNA amplification to toehold switch RNA sensors, we detect clinically relevant concentrations of Zika virus sequences and demonstrate specificity against closely related Dengue virus sequences. When coupled with a novel CRISPR/Cas9-based module, our sensors can discriminate between viral strains with single-base resolution. We successfully demonstrate a simple, field-ready sample-processing workflow and detect Zika virus from the plasma of a viremic macaque. Our freeze-dried biomolecular platform resolves important practical limitations to the deployment of molecular diagnostics in the field and demonstrates how synthetic biology can be used to develop diagnostic tools for confronting global health crises.
URI
https://oasis.postech.ac.kr/handle/2014.oak/39265
DOI
10.1016/j.cell.2016.04.059
ISSN
0092-8674
Article Type
Article
Citation
Cell, vol. 165, no. 5, page. 1255 - 1266, 2016-05-19
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