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Workshop report on the extraction of foetal DNA from maternal plasma
Authors:Tobias J Legler  Zhong Liu  Ariadni Mavrou  Kirstin Finning  Ilona Hromadnikova  Silvia Galbiati  Cathy Meaney  Maj A Hultén  Francesco Crea  Martin L Olsson  Deborah G Maddocks  Dorothy Huang  Sylvia Armstrong Fisher  Markus Sprenger-Haussels  Aicha Ait Soussan  C Ellen van der Schoot
Institution:1. Department of Transfusion Medicine, University of Göttingen, Göttingen, Germany;2. Department Medical Genetics, Aghia Sofia Children's Hospital, Athens, Greece;3. Bristol Institute for Transfusion Science, Bristol, UK;4. Department of Molecular Biology and Cell Pathology, 3rd Medical faculty, Charles University Prague;5. Genomic Unit for the Diagnosis of Human Pathologies, San Raffaele Scientific Institute, Milan, Italy;6. NE Thames Regional Molecular Genetics Laboratory, Great Ormond Street Hospital, London, UK;7. Department of Biological Sciences, University of Warwick, Coventry, UK;8. University Hospital Blood Centre, Lund, Sweden;9. Centre for Research in Biomedicine, Bristol Genomics Research Institute, UK;10. University Women's Hospital, University of Basel, Switzerland;11. Department of Medicine & Therapeutics, Kings College, University of Aberdeen, UK;12. QIAGEN GmbH, Hilden, Germany;13. Sanquin-AMC Landsteiner Laboratory, Amsterdam, The Netherlands
Abstract:Objective Cell free foetal DNA (cff DNA) extracted from maternal plasma is now recognized as a potential source for prenatal diagnosis but the methodology is currently not well standardized. To evaluate different manual and automated DNA extraction methods with a view to developing standards, an International Workshop was performed. Methods Three plasma pools from RhD-negative pregnant women, a DNA standard, real-time-PCR protocol, primers and probes for RHD were sent to 12 laboratories and also to one company (Qiagen, Hilden, Germany). In pre-tests, pool 3 showed a low cff DNA concentration, pool 1 showed a higher concentration and pool 2 an intermediate concentration. Results The QIAamp DSP Virus Kit, the High Pure PCR Template Preparation Kit, an in-house protocol using the QIAamp DNA Blood Mini Kit, the CST genomic DNA purification kit, the Magna Pure LC, the MDx, the M48, the EZ1 and an in-house protocol using magnetic beads for manual and automated extraction were the methods that were able to reliably detect foetal RHD. The best results were obtained with the QIAamp DSP Virus Kit. The QIAamp DNA Blood Mini Kit showed very comparable results in laboratories that followed the manufacturer's protocol and started with ≥ 500 µL plasma. One participant using the QIAamp DNA Blood Midi Kit failed to detect reliably RHD in pool 3. Conclusions This workshop initiated a standardization process for extraction of cff DNA in maternal plasma. The highest yield was obtained by the QIAamp DSP Virus Kit, a result that will be evaluated in more detail in future studies. Copyright © 2007 John Wiley & Sons, Ltd.
Keywords:non-invasive prenatal diagnosis  maternal plasma  cell-free foetal DNA  genotyping  RhD  sensitivity
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