Doping Control Laboratory of the State Antidoping Agency of Spain, Madrid, Spain.
J Chromatogr A. 2011 Oct 14;1218(41):7365-70. doi: 10.1016/j.chroma.2011.08.009. Epub 2011 Aug 24.
Due to the impact in the media and the requirements of sensitivity and robustness, the detection of the misuse of forbidden substances in sports is a really challenging area for analytical chemistry, where any study focused on enhancing the performance of the analytical methods will be of great interest. The aim of the present study was to evaluate the usefulness of using hydrogen instead of helium as a carrier gas for the analysis of anabolic steroids by gas chromatography-mass spectrometry with electron ionization. There are several drawbacks related with the use of helium as a carrier gas: it is expensive, is a non-renewable resource, and has limited availability in many parts of the world. In contrast, hydrogen is readily available using a hydrogen generator or high-pressure bottled gas, and allows a faster analysis without loss of efficiency; nevertheless it should not be forgotten that due to its explosiveness hydrogen must be handled with caution. Throughout the study the impact of the change of the carrier gas will be evaluated in terms of: performance of the chromatographic system, saving of time and money, impact on the high vacuum in the analyzer, changes in the fragmentation behaviour of the analytes, and finally consequences for the limits of detection achieved with the method.
由于媒体的影响以及对灵敏度和稳健性的要求,运动中禁用物质的检测是分析化学中一个极具挑战性的领域,任何旨在提高分析方法性能的研究都将具有重要意义。本研究的目的是评估在使用电子电离进行气相色谱-质谱分析时,用氢气代替氦气作为载气的有用性。使用氦气作为载气有几个缺点:它昂贵、不可再生且在世界许多地方供应有限。相比之下,氢气可以使用氢气发生器或高压瓶装气体轻松获得,并且可以在不降低效率的情况下进行更快的分析;然而,不应忘记,由于其爆炸性,氢气必须谨慎处理。在整个研究过程中,将根据以下方面评估载气变化的影响:色谱系统的性能、节省时间和金钱、对分析器高真空的影响、分析物的碎裂行为变化,以及最后对方法实现的检测限的影响。