Now showing items 1-4 of 4

    • Clinical Validation of a Cas13-Based Assay for the Detection of SARS-CoV-2 RNA 

      Petchsung, Maturada; Jantarug, Krittapas; Pattama, Archiraya; Aphicho, Kanokpol; Suraritdechachai, Surased; Meesawat, Piyachat; Sappakhaw, Khomkrit; Leelahakorn, Nattawat; Ruenkam, Theerawat; Wongsatit, Thanakrit; Athipanyasilp, Niracha; Eiamthong, Bhumrapee; Lakkanasirorat, Benya; Phoodokmai, Thitima; Niljianskul, Nootaree; Pakotiprapha, Danaya; Chanarat, Sittinan; Homchan, Aimorn; Tinikul, Ruchanok; Kamutira, Philaiwarong; Phiwkaow, Kochakorn; Soithongcharoen, Sahachat; Kantiwiriyawanitch, Chadaporn; Pongsupasa, Vinutsada; Trisrivirat, Duangthip; Jaroensuk, Juthamas; Wongnate, Thanyaporn; Maenpuen, Somchart; Chaiyen, Pimchai; Kamnerdnakta, Sirichai; Swangsri, Jirawat; Chuthapisith, Suebwong; Sirivatanauksorn, Yongyut; Chaimayo, Chutikarn; Sutthent, Ruengpung; Kantakamalakul, Wannee; Joung, Julia; Ladha, Alim; Jin, Xin; Gootenberg, Jonathan; Abudayyeh, Omar; Zhang, Feng; Horthongkham, Navin; Uttamapinant, Chayasith; Uttamapinant (2020-08-26)
    • Field-deployable viral diagnostics using CRISPR-Cas13 

      Yozwiak, Nathan; Michael, Scott; Isern, Sharon; Nogueira, Mauricio; Barnes, Kayla; Freije, Catherine; Sabeti, Pardis; Abudayyeh, Omar; Gehrke, Lee; Myhrvold, Cameron; Bosch, Irene; Durbin, Ann; Gootenberg, Jonathan; Kellner, Max; Zhang, Feng; Metsky, Hayden; Tan, Amanda; Parham, Leda; Garcia, Kimberly; Lorenzana, Ivette; Chak, Bridget; Mondini, Adriano; MacInnis, Bronwyn; Paul, Lauren
    • In vivo genome editing using Staphylococcus aureus Cas9 

      Ran, F. Ann; Cong, Le; Yan, Winston X.; Scott, David A.; Gootenberg, Jonathan S.; Kriz, Andrea J.; Zetsche, Bernd; Shalem, Ophir; Wu, Xuebing; Makarova, Kira S.; Koonin, Eugene; Sharp, Phillip A.; Zhang, Feng (2015)
      The RNA-guided endonuclease Cas9 has emerged as a versatile genome-editing platform. However, the size of the commonly used Cas9 from Streptococcus pyogenes (SpCas9) limits its utility for basic research and therapeutic ...
    • Orthogonal gene knock out and activation with a catalytically active Cas9 nuclease 

      Dahlman, James E.; Abudayyeh, Omar O.; Joung, Julia; Gootenberg, Jonathan S.; Zhang, Feng; Konermann, Silvana (2015)
      We have developed a CRISPR-based method that uses catalytically active Cas9 and distinct sgRNA constructs to knock out and activate different genes in the same cell. These sgRNAs, with 14 15 bp target sequences and MS2 ...