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10.1128/mSphere.00307-17

http://scihub22266oqcxt.onion/10.1128/mSphere.00307-17
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C5597969!5597969!28932815
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suck abstract from ncbi


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pmid28932815      mSphere 2017 ; 2 (5): ä
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  • A Multicenter Study To Evaluate the Performance of High-Throughput Sequencing for Virus Detection #MMPMID28932815
  • Khan AS; Ng SHS; Vandeputte O; Aljanahi A; Deyati A; Cassart JP; Charlebois RL; Taliaferro LP
  • mSphere 2017[Sep]; 2 (5): ä PMID28932815show ga
  • Recent high-throughput sequencing (HTS) investigations have resulted in unexpected discoveries of known and novel viruses in a variety of sample types, including research materials, clinical materials, and biological products. Therefore, HTS can be a powerful tool for supplementing current methods for demonstrating the absence of adventitious or unwanted viruses in biological products, particularly when using a new cell line. However, HTS is a complex technology with different platforms, which needs standardization for evaluation of biologics. This collaborative study was undertaken to investigate detection of different virus types using two different HTS platforms. The results of the independently performed studies demonstrated a similar sensitivity of virus detection, regardless of the different sample preparation and processing procedures and bioinformatic analyses done in the three laboratories. Comparable HTS detection of different virus types supports future development of reference virus materials for standardization and validation of different HTS platforms.
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