Zhang Hua-Hai, Huang Ya-Jun, Liu Yan-Chun, Jiang Xu-Yan, Zhang Shuo-Xin, Liu Zhao-Ying
College of Forestry, Northwest A&F University, 3 Taicheng Rd., Yangling, Shaanxi, 712100, China.
Qinling National Forest Ecosystem Research Station, Huoditang, Ningshan, Shaanxi, 711600, China.
Rapid Commun Mass Spectrom. 2019 Jul 30;33(14):1179-1184. doi: 10.1002/rcm.8457.
Gelsemium elegans Benth. belongs to the family Loganiaceae and is widely distributed in northern America, east Asia, and southeast Asia. It has attracted wide attention for its diverse biological effects and complex architectures. Gelsevirine is one of the major components in G. elegans. Compared with other alkaloids from G. elegans, gelsevirine exhibits equally potent anxiolytic effects but with less toxicity. However, the metabolism of gelsevirine has not been clearly elucidated.
The metabolism of gelsevirine was investigated using liver S9 fractions derived from rat liver homogenates by centrifugation at 9000 g. A rapid and accurate high-performance liquid chromatography/quadrupole-time-of-flight mass spectrometry (HPLC/QqTOF-MS) method was applied to characterize the gelsevirine metabolites.
We discovered a total number of four metabolites of gelsevirine. The metabolic pathways of gelsevirine consisted of hydrogenation, N-demethylenation and oxidation in rat liver S9.
This is the first study on the metabolism of gelsevirine. We proposed possible metabolic pathways of gelsevirine. These findings may warrant future studies of the in vivo metabolism of gelsemine in animals.
钩吻属于马钱科,广泛分布于北美洲、东亚和东南亚。它因其多样的生物学效应和复杂的结构而备受关注。钩吻素甲是钩吻的主要成分之一。与钩吻中的其他生物碱相比,钩吻素甲具有同等强效的抗焦虑作用,但毒性较小。然而,钩吻素甲的代谢尚未得到明确阐明。
采用通过在9000g离心从大鼠肝脏匀浆中获得的肝脏S9组分研究钩吻素甲的代谢。应用快速准确的高效液相色谱/四极杆-飞行时间质谱(HPLC/QqTOF-MS)方法来表征钩吻素甲的代谢产物。
我们总共发现了四种钩吻素甲的代谢产物。钩吻素甲在大鼠肝脏S9中的代谢途径包括氢化、N-去亚甲基化和氧化。
这是关于钩吻素甲代谢的首次研究。我们提出了钩吻素甲可能的代谢途径。这些发现可能为未来动物体内钩吻碱代谢的研究提供依据。