Engineered Combined-Positive-Control Template for Real-Time Reverse Transcription-PCR in Multiple-Pathogen-Detection Assays

被引:39
|
作者
Kodani, Maja [1 ]
Winchell, Jonas M. [1 ]
机构
[1] Ctr Dis Control & Prevent, Div Bacterial Dis, Resp Dis Branch, Natl Ctr Immunizat & Resp Dis, Atlanta, GA 30333 USA
关键词
RESPIRATORY-TRACT; INFECTION; BACTERIAL; VIRUSES;
D O I
10.1128/JCM.05987-11
中图分类号
Q93 [微生物学];
学科分类号
071005 ; 100705 ;
摘要
Recently we evaluated a custom TaqMan array card (TAC) detection system, formerly known as a TaqMan low-density array (TLDA) card, for simultaneous real-time PCR identification of 21 pathogens and three control targets in duplicate from respiratory specimens (M. Kodani et al., J. Clin. Microbiol. 49: 2175-2182, 2011). We engineered an adaptable and expandable system of in vitro RNA transcripts to serve as a combined positive control for both DNA and RNA targets in multiple-pathogen-detection technologies based on real-time reverse transcription-PCR.
引用
收藏
页码:1057 / 1060
页数:4
相关论文
共 50 条
  • [1] Real-time fluorogenic reverse transcription-PCR assays for detection of bacteriophage MS2
    O'Connell, KP
    Bucher, JR
    Anderson, PE
    Cao, CJ
    Khan, AS
    Gostomski, MV
    Valdes, JJ
    APPLIED AND ENVIRONMENTAL MICROBIOLOGY, 2006, 72 (01) : 478 - 483
  • [2] Development of one-step TaqMan® real-time reverse transcription-PCR and conventional reverse transcription-PCR assays for the detection of equine rhinitis A and B viruses
    Lu, Zhengchun
    Timoney, Peter J.
    White, Jena
    Balasuriya, Udeni B. R.
    BMC VETERINARY RESEARCH, 2012, 8
  • [3] Development of one-step TaqMan® real-time reverse transcription-PCR and conventional reverse transcription-PCR assays for the detection of equine rhinitis A and B viruses
    Zhengchun Lu
    Peter J Timoney
    Jena White
    Udeni BR Balasuriya
    BMC Veterinary Research, 8
  • [4] Real-time reverse transcription-PCR assay for comprehensive detection of human rhinoviruses
    Lu, Xiaoyan
    Holloway, Brian
    Dare, Ryan K.
    Kuypers, Jane
    Yagi, Shigeo
    Williams, John V.
    Hall, Caroline B.
    Erdman, Dean D.
    JOURNAL OF CLINICAL MICROBIOLOGY, 2008, 46 (02) : 533 - 539
  • [6] New Subgenotyping and Consensus Real-Time Reverse Transcription-PCR Assays for Hepatitis A Outbreak Surveillance
    Probert, William S.
    Hacker, Jill K.
    JOURNAL OF CLINICAL MICROBIOLOGY, 2019, 57 (09)
  • [7] Detection of equine arteritis virus by real-time TaqMan® reverse transcription-PCR assay
    Balasuriya, UBR
    Leutenegger, CM
    Topol, JB
    McCollum, WH
    Timoney, PJ
    MacLachlan, NJ
    JOURNAL OF VIROLOGICAL METHODS, 2002, 101 (1-2) : 21 - 28
  • [8] Real-time NASBA detection of SARS-associated coronavirus and comparison with real-time reverse transcription-PCR
    Keightley, MC
    Sillekens, P
    Schippers, W
    Rinaldo, C
    St George, K
    JOURNAL OF MEDICAL VIROLOGY, 2005, 77 (04) : 602 - 608
  • [9] Preclinical evaluation of two real-time, reverse transcription-PCR assays for detection of the severe acute respiratory syndrome coronavirus
    Bressler, AM
    Nolte, FS
    JOURNAL OF CLINICAL MICROBIOLOGY, 2004, 42 (03) : 987 - 991
  • [10] One-Step Real-Time Reverse Transcription-PCR for the Detection of Turkey Reoviruses
    Mor, Sunil K.
    Verma, Harsha
    Bekele, Aschalew Z.
    Sharafeldin, Tamer A.
    Porter, Robert E.
    Goyal, Sagar M.
    AVIAN DISEASES, 2014, 58 (03) : 404 - 407