Hansson Annelie, Thevis Mario, Cox Holly, Miller Geoff, Eichner Daniel, Bondesson Ulf, Hedeland Mikael
Division of Analytical Pharmaceutical Chemistry, Department of Medicinal Chemistry, Uppsala University, Box 574, SE-75123, Uppsala, Sweden.
Institute of Biochemistry and Center for Preventive Doping Research, German Sport University, Cologne, Germany.
J Pharm Biomed Anal. 2017 Feb 5;134:228-236. doi: 10.1016/j.jpba.2016.11.041. Epub 2016 Nov 27.
FG-4592 is a hypoxia-inducible factor (HIF) stabilizer, which can increase the number of red blood cells in the body. It has not been approved by regulatory authorities, but is available for purchase on the Internet. Due to its ability to improve the oxygen transportation mechanism in the body, FG-4592 is of interest for doping control laboratories, but prior to this study, little information about its metabolism was available. In this study, the metabolism of FG-4592 was investigated in a human doping control sample and in five in vitro models: human hepatocytes and liver microsomes, equine liver microsomes and S9 fraction and the fungus Cunninghamella elegans. By using liquid chromatography coupled to a Q-TOF mass spectrometer operated in MS and MSMS modes, twelve different metabolites were observed for FG-4592. One monohydroxylated metabolite was detected in both the human and equine liver microsome incubations. For the fungus Cunninghamella elegans eleven different metabolites were observed of which the identical monohydroxylated metabolite had the highest response. This rich metabolic profile and the higher levels of metabolites produced by Cunninghamella elegans demonstrates its usefulness as a metabolite producing medium. In the doping control urine sample, one metabolite, which was the result of a direct glucuronidation, was observed. No metabolites were detected in neither the human hepatocyte nor in the equine liver S9 fraction incubates.
FG - 4592是一种缺氧诱导因子(HIF)稳定剂,可增加体内红细胞数量。它尚未获得监管机构的批准,但可在互联网上购买。由于其能够改善体内的氧气运输机制,FG - 4592引起了反兴奋剂检测实验室的关注,但在本研究之前,关于其代谢的信息很少。在本研究中,在一份人体反兴奋剂检测样本以及五种体外模型中研究了FG - 4592的代谢情况:人肝细胞和肝微粒体、马肝微粒体和S9组分以及真菌雅致小克银汉霉。通过使用与在MS和MS/MS模式下运行的Q - TOF质谱仪联用的液相色谱法,观察到FG - 4592有十二种不同的代谢产物。在人和马的肝微粒体孵育物中均检测到一种单羟基化代谢产物。对于真菌雅致小克银汉霉,观察到十一种不同的代谢产物,其中相同的单羟基化代谢产物具有最高的响应。这种丰富的代谢图谱以及雅致小克银汉霉产生的较高水平的代谢产物证明了它作为代谢产物产生介质的有用性。在反兴奋剂检测尿样中,观察到一种直接葡萄糖醛酸化产生的代谢产物。在人肝细胞和马肝S9组分孵育物中均未检测到代谢产物。