Kato Koji, Jingu Shigeji, Ogawa Naoyoshi, Higuchi Shohei
Drug Metabolism Laboratory, Pharmaceutical Research Laboratories, Taisho Pharmaceutical Co. Ltd, Saitama, Saitama 330-8530, Japan.
Biomed Chromatogr. 2002 Feb;16(1):25-30. doi: 10.1002/bmc.119.
This report describes the application of a liquid chromatography-tandem mass spectrometry (LC-MS/MS) method to differentiation of hydroxylations and N-oxidations and of two different aliphatic hydroxylations in the investigation of the metabolism of pibutidine hydrochloride, a novel H2 antagonist, the structure of which includes a piperidine ring. Pibutidine metabolites in urine samples from adult male volunteers after oral administration of pibutidine hydrochloride were separated by reversed-phase LC and ionized using an electrospray ionization (ESI) interface. A hydroxylated form of pibutidine was distinguished from the N-oxide by comparison of their product ion spectra, although their mass-to-charge ratios of protonated molecules were identical. Further, two hydroxylated compounds were present in rat microsomal incubation mixtures with pibutidine. The distinction between their positions of hydroxylation (beta- and gamma-carbon hydroxylation) on the piperidine ring was studied using [piperidine-2H10] pibutidine as incubation substrate. The production of the beta-hydroxylated form was accompanied by the elimination of three 2H, resulting from a mechanism including the formation of iminium/enamine. The participation of the iminium ion intermediate in the beta-hydroxylation was confirmed by the observation that a cyanide adduct of pibutidine was formed instead of the beta-hydroxylated form when another incubation was performed in the presence of cyanide.
本报告描述了一种液相色谱 - 串联质谱(LC - MS/MS)方法在盐酸匹布替丁(一种新型H2拮抗剂,其结构包含哌啶环)代谢研究中用于区分羟基化和N - 氧化以及两种不同脂肪族羟基化的应用。成年男性志愿者口服盐酸匹布替丁后尿样中的匹布替丁代谢产物通过反相LC分离,并使用电喷雾电离(ESI)接口进行离子化。尽管质子化分子的质荷比相同,但通过比较它们的产物离子光谱,可将匹布替丁的羟基化形式与N - 氧化物区分开来。此外,在与匹布替丁的大鼠微粒体孵育混合物中存在两种羟基化化合物。使用[哌啶 - 2H10]匹布替丁作为孵育底物,研究了它们在哌啶环上羟基化位置(β - 和γ - 碳羟基化)的差异。β - 羟基化形式的产生伴随着三个2H的消除,这是由包括亚胺离子/烯胺形成的机制导致的。当在氰化物存在下进行另一次孵育时,观察到形成了匹布替丁的氰化物加合物而不是β - 羟基化形式,从而证实了亚胺离子中间体参与β - 羟基化反应。