Deployable CRISPR-Cas13a diagnostic tools to detect and report Ebola and Lassa virus cases in real-time

Outbreaks of viral hemorrhagic fevers highlight the need for sensitive, field-deployable diagnostics. Here the authors present a CRISPR-based SHERLOCK platform with field protocol and mobile app for Ebola and Lassa fever outbreaks.

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Autores principales: Kayla G. Barnes, Anna E. Lachenauer, Adam Nitido, Sameed Siddiqui, Robin Gross, Brett Beitzel, Katherine J. Siddle, Catherine A. Freije, Bonnie Dighero-Kemp, Samar B. Mehta, Amber Carter, Jessica Uwanibe, Fehintola Ajogbasile, Testimony Olumade, Ikponmwosa Odia, John Demby Sandi, Mambu Momoh, Hayden C. Metsky, Chloe K. Boehm, Aaron E. Lin, Molly Kemball, Daniel J. Park, Luis Branco, Matt Boisen, Brian Sullivan, Mihret F. Amare, Abdulwasiu B. Tiamiyu, Zahra F. Parker, Michael Iroezindu, Donald S. Grant, Kayvon Modjarrad, Cameron Myhrvold, Robert F. Garry, Gustavo Palacios, Lisa E. Hensley, Stephen F. Schaffner, Christian T. Happi, Andres Colubri, Pardis C. Sabeti
Formato: article
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Publicado: Nature Portfolio 2020
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Acceso en línea:https://doaj.org/article/08e45296a0194caf8c3263c4c6cc81b0
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spelling oai:doaj.org-article:08e45296a0194caf8c3263c4c6cc81b02021-12-02T17:08:30ZDeployable CRISPR-Cas13a diagnostic tools to detect and report Ebola and Lassa virus cases in real-time10.1038/s41467-020-17994-92041-1723https://doaj.org/article/08e45296a0194caf8c3263c4c6cc81b02020-08-01T00:00:00Zhttps://doi.org/10.1038/s41467-020-17994-9https://doaj.org/toc/2041-1723Outbreaks of viral hemorrhagic fevers highlight the need for sensitive, field-deployable diagnostics. Here the authors present a CRISPR-based SHERLOCK platform with field protocol and mobile app for Ebola and Lassa fever outbreaks.Kayla G. BarnesAnna E. LachenauerAdam NitidoSameed SiddiquiRobin GrossBrett BeitzelKatherine J. SiddleCatherine A. FreijeBonnie Dighero-KempSamar B. MehtaAmber CarterJessica UwanibeFehintola AjogbasileTestimony OlumadeIkponmwosa OdiaJohn Demby SandiMambu MomohHayden C. MetskyChloe K. BoehmAaron E. LinMolly KemballDaniel J. ParkLuis BrancoMatt BoisenBrian SullivanMihret F. AmareAbdulwasiu B. TiamiyuZahra F. ParkerMichael IroezinduDonald S. GrantKayvon ModjarradCameron MyhrvoldRobert F. GarryGustavo PalaciosLisa E. HensleyStephen F. SchaffnerChristian T. HappiAndres ColubriPardis C. SabetiNature PortfolioarticleScienceQENNature Communications, Vol 11, Iss 1, Pp 1-10 (2020)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Kayla G. Barnes
Anna E. Lachenauer
Adam Nitido
Sameed Siddiqui
Robin Gross
Brett Beitzel
Katherine J. Siddle
Catherine A. Freije
Bonnie Dighero-Kemp
Samar B. Mehta
Amber Carter
Jessica Uwanibe
Fehintola Ajogbasile
Testimony Olumade
Ikponmwosa Odia
John Demby Sandi
Mambu Momoh
Hayden C. Metsky
Chloe K. Boehm
Aaron E. Lin
Molly Kemball
Daniel J. Park
Luis Branco
Matt Boisen
Brian Sullivan
Mihret F. Amare
Abdulwasiu B. Tiamiyu
Zahra F. Parker
Michael Iroezindu
Donald S. Grant
Kayvon Modjarrad
Cameron Myhrvold
Robert F. Garry
Gustavo Palacios
Lisa E. Hensley
Stephen F. Schaffner
Christian T. Happi
Andres Colubri
Pardis C. Sabeti
Deployable CRISPR-Cas13a diagnostic tools to detect and report Ebola and Lassa virus cases in real-time
description Outbreaks of viral hemorrhagic fevers highlight the need for sensitive, field-deployable diagnostics. Here the authors present a CRISPR-based SHERLOCK platform with field protocol and mobile app for Ebola and Lassa fever outbreaks.
format article
author Kayla G. Barnes
Anna E. Lachenauer
Adam Nitido
Sameed Siddiqui
Robin Gross
Brett Beitzel
Katherine J. Siddle
Catherine A. Freije
Bonnie Dighero-Kemp
Samar B. Mehta
Amber Carter
Jessica Uwanibe
Fehintola Ajogbasile
Testimony Olumade
Ikponmwosa Odia
John Demby Sandi
Mambu Momoh
Hayden C. Metsky
Chloe K. Boehm
Aaron E. Lin
Molly Kemball
Daniel J. Park
Luis Branco
Matt Boisen
Brian Sullivan
Mihret F. Amare
Abdulwasiu B. Tiamiyu
Zahra F. Parker
Michael Iroezindu
Donald S. Grant
Kayvon Modjarrad
Cameron Myhrvold
Robert F. Garry
Gustavo Palacios
Lisa E. Hensley
Stephen F. Schaffner
Christian T. Happi
Andres Colubri
Pardis C. Sabeti
author_facet Kayla G. Barnes
Anna E. Lachenauer
Adam Nitido
Sameed Siddiqui
Robin Gross
Brett Beitzel
Katherine J. Siddle
Catherine A. Freije
Bonnie Dighero-Kemp
Samar B. Mehta
Amber Carter
Jessica Uwanibe
Fehintola Ajogbasile
Testimony Olumade
Ikponmwosa Odia
John Demby Sandi
Mambu Momoh
Hayden C. Metsky
Chloe K. Boehm
Aaron E. Lin
Molly Kemball
Daniel J. Park
Luis Branco
Matt Boisen
Brian Sullivan
Mihret F. Amare
Abdulwasiu B. Tiamiyu
Zahra F. Parker
Michael Iroezindu
Donald S. Grant
Kayvon Modjarrad
Cameron Myhrvold
Robert F. Garry
Gustavo Palacios
Lisa E. Hensley
Stephen F. Schaffner
Christian T. Happi
Andres Colubri
Pardis C. Sabeti
author_sort Kayla G. Barnes
title Deployable CRISPR-Cas13a diagnostic tools to detect and report Ebola and Lassa virus cases in real-time
title_short Deployable CRISPR-Cas13a diagnostic tools to detect and report Ebola and Lassa virus cases in real-time
title_full Deployable CRISPR-Cas13a diagnostic tools to detect and report Ebola and Lassa virus cases in real-time
title_fullStr Deployable CRISPR-Cas13a diagnostic tools to detect and report Ebola and Lassa virus cases in real-time
title_full_unstemmed Deployable CRISPR-Cas13a diagnostic tools to detect and report Ebola and Lassa virus cases in real-time
title_sort deployable crispr-cas13a diagnostic tools to detect and report ebola and lassa virus cases in real-time
publisher Nature Portfolio
publishDate 2020
url https://doaj.org/article/08e45296a0194caf8c3263c4c6cc81b0
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