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Antidoping Science: Important Lessons From the Medical Sciences

机译:抗辩科学:医学科学的重要教训

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The ineffectiveness of antidoping programs in elite sport, largely due to human and political factors, is leading to a new resolve and greater transparency of antidoping authorities and those stakeholders interested in drug-free sport. The perception by the public, athletes, and the World Anti-Doping Agency (WADA) of antidoping science and current drug testing programs in elite sport varies widely from "ineffective" to ‘‘robust and reliable.’’ Here, we discuss why a careful and considered reevaluation of the underlying premise of antidoping science is needed to bring this unique application of predictive/diagnostic science more in line with other areas of medicine. We show how the validity of doping tests are neither ‘‘stand-alone figures’’ generated under ideal laboratory conditions, nor figures that can be used in isolation to support the efficacy of the current drug testing program. Given the consequences of a failed doping test for the athlete, the sport, and multiple stakeholders (e.g., the sponsors), there is a need for transparent decision making to ensure those affected are well informed. We identify in this perspective the minimal essential data on drug testing that should be reported by antidoping laboratories to draw meaningful conclusions about the effectiveness of specific drug testing methods to support antidoping. In the absence of information on the validity of a doping test, it is not possible to plan or conduct ‘‘intelligent testing.’’ It is imperative that the prevalence of doping and the likelihood of false-positive doping tests be regularly updated and made available for the wider antidoping research community to explore new approaches that could improve the validity of antidoping tests. True confirmatory testing which requires the use of different analytical technology and ideally an independent sample taken from an athlete with a positive test to transcend the present-day analysis of the B-sample. Indirect biomarkers of doping derived from new ‘‘omics’’-based approaches may significantly improve the testing strategy. Biomarker molecular signatures are flexible enough to develop ‘‘normal ranges’’ optimized for either test sensitivity or specificity to detect a plethora of doping substances and methods.
机译:在精英运动中抗拒计划的无效,主要是由于人和政治因素,导致抗拒政府的新决心和更大的透明度以及对无毒运动的利益相关者。公众,运动员和世界反兴奋剂机构(WADA)在精英体育中的抗辩科学和当前药物检测计划的看法从“无效”变化,从“坚固且可靠”中广泛不同。“我们讨论了为什么需要仔细和考虑对抗辩生科学的潜在前提的重新评估,以使这种独特的预测/诊断科学适用于其他药物。我们展示了掺杂试验的有效性如何在理想的实验室条件下产生的“独立图”,也不是可以用于隔离的数字以支持当前药物测试程序的功效。鉴于运动员,这项运动和多个利益攸关方(例如,赞助商)失败的兴奋剂测试的后果,需要透明决策,以确保受影响的人得到了解。我们在这种看法中确定了关于药物测试的最小基本数据,抗辩实验室应该报告有关特定药物检测方法的有效性的有意义的结论,以支持抗动。在没有关于掺杂试验的有效性的信息的情况下,无法计划或开展“智能测试”。“令人兴奋的普遍性和假冒掺杂试验的可能性必须定期更新和制造可用于更广泛的抗锯齿研究界,探索能够提高抗动检测测试的有效性的新方法。真实的确认测试需要使用不同的分析技术,理想地是一种从运动员采取的独立样品,并具有阳性测试,以超越B样品的当前分析。基于新的“OMICS”方法的间接生物标志物可以显着提高测试策略。生物标志物的分子签名足够灵活,可以针对测试敏感性或特异性进行优化的“正常范围”,以检测掺杂物质和方法的过多。

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