Edlund Per Olof, Baranczewski Pawel
Preclinical R&D, Biovitrum AB, Lindhagensgatan 133, SE-112 76 Stockholm, Sweden.
J Pharm Biomed Anal. 2004 Mar 10;34(5):1079-90. doi: 10.1016/j.jpba.2003.12.010.
The metabolism of the 5HT2c agonist BVT.2938, 1-(3-[2-[(2-ethoxy-3-pyridinyl)oxy]ethoxy]-2-pyrazinyl)-2(R)-methylpiperazine, was studied in vitro by incubation with rat, monkey and human liver microsomes as well as cryopreserved hepatocytes, followed by liquid chromatography/mass spectrometry (LC/MS) and LC/MS/MS analysis on a quadrupole-time of flight mass spectrometer for structural elucidation. Deuterium exchange on column was used to differentiate between hydroxylation and N-oxidation. Liver microsomes were incubated in two different buffer systems with optimum conditions for cytochrome P450 activity or UDP-glucuronosyltransferase activity. The major phase I metabolites of BVT.2938 originated from O-deethylation of the pyridine ring, O-dealkylation of the ethylene bridge, pyrazine ring hydroxylation, hydroxylation of pyridine ring and piperazine ring N-hydroxylation. When a hydrogen carbonate buffer system was supplemented with UDPGA, the piperazine carbamoyl-glucuronide from the parent compound was identified together with several glucuronides of the phase I metabolites. The metabolite pattern in hepatocytes was similar to microsomes except that the sulphate at the N-position of the piperazine ring of BVT.2938 was identified, while the carbamoyl-glucuronide was missing. Excellent correlation was obtained between radioactivity detection and the chemiluminescent nitrogen detector when the nitrogen content of the analytes was taken into account.
在体外研究了5-羟色胺2c受体激动剂BVT.2938(1-(3-[2-[(2-乙氧基-3-吡啶基)氧基]乙氧基]-2-吡嗪基)-2(R)-甲基哌嗪)的代谢情况,方法是将其与大鼠、猴和人的肝微粒体以及冻存的肝细胞一起孵育,然后在四极杆飞行时间质谱仪上进行液相色谱/质谱(LC/MS)和液相色谱/串联质谱(LC/MS/MS)分析以阐明结构。采用柱上氘交换来区分羟基化和N-氧化。肝微粒体在两种不同的缓冲体系中孵育,这些缓冲体系具有细胞色素P450活性或UDP-葡萄糖醛酸基转移酶活性的最佳条件。BVT.2938的主要I相代谢产物源自吡啶环的O-脱乙基、乙烯桥的O-脱烷基、吡嗪环羟基化、吡啶环羟基化以及哌嗪环N-羟基化。当在碳酸氢盐缓冲体系中补充UDPGA时,鉴定出了母体化合物的哌嗪氨基甲酰葡萄糖醛酸苷以及几种I相代谢产物的葡萄糖醛酸苷。肝细胞中的代谢产物模式与微粒体相似,只是鉴定出了BVT.2938哌嗪环N位的硫酸盐,而氨基甲酰葡萄糖醛酸苷缺失。当考虑分析物的氮含量时,放射性检测与化学发光氮检测器之间获得了良好的相关性。