Establishing a novel single-copy primer-internal intron-spanning PCR (spiPCR) procedure for the direct detection of gene doping

Authors

  • Thomas Beiter Department of Sports Medicine, Medical Clinic, University of Tuebingen, Germany Author
  • Martina Zimmermann Department of Gastroenterology & Hepatology, Medical Clinic, University of Tuebingen, Germany Author
  • Annunziata Fragasso Department of Sports Medicine, Medical Clinic, University of Tuebingen, Germany Author
  • Sorin Armeanu Department of Gastroenterology & Hepatology, Medical Clinic, University of Tuebingen, Germany Author
  • Ulrich M. Lauer Department of Gastroenterology & Hepatology, Medical Clinic, University of Tuebingen, Germany Author
  • Michael Bitzer Department of Gastroenterology & Hepatology, Medical Clinic, University of Tuebingen, Germany Author
  • Hua Su Center for Cerebrovascular Research, Department of Anesthesia and Perioperative Care, University of California, San Francisco, California, USA Author
  • William L. Young Center for Cerebrovascular Research, Department of Anesthesia and Perioperative Care, University of California, San Francisco, California, USA Author
  • Andreas M. Niess Department of Sports Medicine, Medical Clinic, University of Tuebingen, Germany Author
  • Perikles Simon Department of Sports Medicine, Medical Clinic, University of Tuebingen, Germany Author

DOI:

https://doi.org/10.22029/eir.2008.1639

Keywords:

THERAPY, EXERCISE, SAFETY, HEMOPHILIA, STRATEGIES, IMMEDIATE, CELLS, LIVER

Abstract

So far, the abuse of gene transfer technology in sport, so-called gene doping, is undetectable. However, recent studies in somatic gene therapy indicate that long-term presence of transgenic DNA (tDNA) following various gene transfer protocols can be found in DNA isolated from whole blood using conventional PCR protocols. Application of these protocols for the direct detection of gene doping would require almost complete knowledge about the sequence of the genetic information that has been transferred. Here, we develop and describe the novel single-copy primer-internal intron-spanning PCR (spiPCR) procedure that overcomes this difficulty. Apart from the interesting perspectives that this spiPCR procedure offers in the fight against gene doping, this technology could also be of interest in biodistribution and biosafety studies for gene therapeutic applications.

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Published

2008-12-31

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Section

Articles