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Evaluation of automated nucleic acid extraction methods for virus detection in a multicenter comparative trial

  • Thomas Bruun Rasmussen
  • , Åse Uttenthal
  • , Mikhayil Hakhverdyan
  • , Sándor Belák
  • , Philip R. Wakeley
  • , Scott M. Reid
  • , Katja Ebert
  • , Donald P. King

    Publikation: Bidrag till tidskriftArtikel i vetenskaplig tidskriftPeer review

    Sammanfattning

    Five European veterinary laboratories participated in an exercise to compare the performance of nucleic acid extraction robots. Identical sets of coded samples were prepared using serial dilutions of bovine viral diarrhoea virus (BVDV) from serum and cell culture propagated material. Each laboratory extracted nucleic acid from this panel using available robotic equipment (12 separate instruments, comprising 8 different models), after which the processed samples were frozen and sent to a single laboratory for subsequent testing by real-time RT-PCR. In general, there was good concordance between the results obtained for the different automated extraction platforms. In particular, the limit of detection was identical for 9/12 and 8/12 best performing robots (using dilutions of BVDV infected-serum and cell culture material, respectively), which was similar to a manual extraction method used for comparison. The remaining equipment and protocols used were less sensitive, in an extreme case for serum, by a factor of 1000. There was no evidence for cross-contamination of RNA template in any of the negative samples included in these panels. These results are not intended to replace local optimisation and validation, but provide reassurance to laboratories to indicate that the best performing optimised nucleic acid extraction systems can have similar performance. (c) 2008 Elsevier B.V. All rights reserved.
    OriginalspråkEngelska
    Sidor (från-till)87-90
    Antal sidor4
    TidskriftJournal of Virological Methods
    Volym155
    Nummer1
    DOI
    StatusPublicerad - 2009

    Nyckelord

    • Robotics
    • Extraction
    • RNA virus
    • Nucleic acid
    • Real-time RT-PCR

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