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Gene doping detection: evaluation of approach for direct detection of gene transfer using erythropoietin as a model system.

机译:基因掺杂检测:评估使用促红细胞生成素作为模型系统直接检测基因转移的方法。

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摘要

As clinical gene therapy has progressed toward realizing its potential, concern over misuse of the technology to enhance performance in athletes is growing. Although 'gene doping' is banned by the World Anti-Doping Agency, its detection remains a major challenge. In this study, we developed a methodology for direct detection of the transferred genetic material and evaluated its feasibility for gene doping detection in blood samples from athletes. Using erythropoietin (EPO) as a model gene and a simple in vitro system, we developed real-time PCR assays that target sequences within the transgene complementary DNA corresponding to exon/exon junctions. As these junctions are absent in the endogenous gene due to their interruption by introns, the approach allows detection of trace amounts of a transgene in a large background of the endogenous gene. Two developed assays and one commercial gene expression assay for EPO were validated. On the basis of ability of these assays to selectively amplify transgenic DNA and analysis of literature on testing of gene transfer in preclinical and clinical gene therapy, it is concluded that the developed approach would potentially be suitable to detect gene doping through gene transfer by analysis of small volumes of blood using regular out-of-competition testing.
机译:随着临床基因治疗朝着实现其潜力发展,对滥用该技术以增强运动员成绩的担忧日益增加。尽管世界反兴奋剂机构禁止“基因掺杂”,但其检测仍然是一项重大挑战。在这项研究中,我们开发了一种直接检测转移的遗传物质的方法,并评估了其在运动员血液样本中进行基因掺杂检测的可行性。使用促红细胞生成素(EPO)作为模型基因和简单的体外系统,我们开发了实时PCR分析,其靶向转基因互补DNA中与外显子/外显子连接对应的序列。由于这些连接由于内含子的干扰而在内源基因中不存在,因此该方法允许在内源基因的大背景下检测痕量的转基因。验证了两种针对EPO开发的检测方法和一种商业化的基因表达检测方法。根据这些检测方法选择性扩增转基因DNA的能力以及有关临床前和临床基因治疗中基因转移测试文献的分析,得出的结论是,所开发的方法将可能适合通过对基因的分析来检测基因掺杂。使用常规的赛外测试来采集少量血液。

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