Analysis Department, Agence Française de Lutte contre le Dopage (AFLD), Châtenay-Malabry, France.
Drug Test Anal. 2022 Jan;14(1):181-187. doi: 10.1002/dta.2601. Epub 2020 Dec 2.
Recombinant erythropoietins (rEPOs) are still among the substances endurance athletes use for doping. Detection methods are based on an electrophoretic separation of the proteins followed by a western blot and immunodetection with specific anti-EPO antibodies. In addition to IEF-PAGE, the SDS-PAGE method has been used to differentiate endogenous EPO from rEPOs by their molecular weight (MW). However, to adapt to new generations of rEPOs exhibiting higher MW, which were not well detected after SDS-PAGE, sodium lauroyl sarcosinate (SAR) is now used instead of sodium dodecyl sulfate (SDS) for the initial EPO testing procedure on doping control samples. The SAR-PAGE method is nevertheless expensive as it requires frequent buffer preparations using highly purified sarkosyl powder. In addition, this reagent needs to be handled with care due to acute toxicity by inhalation. The aim of this work was to improve the SDS-PAGE method by increasing its sensitivity and transfer of high-MW rEPOs. First, using a biotinylated primary anti-EPO antibody and avoiding the use of a secondary antibody increased the general sensitivity of both SDS-PAGE and SAR-PAGE to all rEPOs about four-fold. Then, by changing the buffer system during the protein transfer, with a CAPS buffer and a discontinuous buffer transfer system, high-MW rEPOs, EPO-Fc and CERA were transferred with higher efficiency and detected with high sensitivity. This optimized SDS-PAGE protocol could be adopted by anti-doping laboratories as an alternative to SAR-PAGE.
重组促红细胞生成素(rEPOs)仍然是耐力运动员使用的兴奋剂之一。检测方法基于电泳分离蛋白质,然后进行 Western blot 免疫检测,使用特定的抗 EPO 抗体。除了等电聚焦-聚丙烯酰胺凝胶电泳(IEF-PAGE)外,SDS-PAGE 方法还通过其分子量(MW)来区分内源性 EPO 和 rEPOs。然而,为了适应具有更高 MW 的新一代 rEPOs,SDS-PAGE 后无法很好地检测到这些 rEPOs,因此现在在兴奋剂控制样本的初始 EPO 测试过程中,使用十二烷基肌氨酸(SAR)代替十二烷基硫酸钠(SDS)。尽管 SAR-PAGE 方法很昂贵,因为它需要使用高度纯化的 sarkosyl 粉末频繁制备缓冲液。此外,由于吸入的急性毒性,这种试剂需要小心处理。本工作的目的是通过提高 SDS-PAGE 方法的灵敏度和转移高分子量 rEPOs 来改进该方法。首先,使用生物素化的初级抗 EPO 抗体并避免使用二级抗体,使 SDS-PAGE 和 SAR-PAGE 对所有 rEPOs 的灵敏度均提高了约四倍。然后,通过在蛋白质转移过程中改变缓冲液系统,使用 CAPS 缓冲液和不连续缓冲液转移系统,可以更有效地转移高分子量 rEPOs、EPO-Fc 和 CERA,并具有更高的灵敏度进行检测。这种优化的 SDS-PAGE 方案可以被反兴奋剂实验室采用,作为 SAR-PAGE 的替代方法。