Zhao Feng, Ma Yinling, Yin Jintuo, Li Ying, Cao Yanli, Zhang Lantong
School of Pharmacy, Hebei Medical University, Shijiazhuang 050017, China.
National Clinical Drug Monitoring Center, Department of Pharmacy, Hebei Province General Center, Shijiazhuang 050051, China.
Metabolites. 2022 Oct 28;12(11):1032. doi: 10.3390/metabo12111032.
Galangin, a naturally available flavonoid, induces a variety of pharmacological activities and biological effects via several mechanisms. However, in vivo metabolism of galangin has not been fully explored, which means knowledge of its pharmacodynamics and application potential is limited. The objective of this study was to establish an ultra-high-performance liquid chromatography-quadrupole time-of-flight mass spectrometry method for the rapid profiling and identification of galangin metabolites in vitro and in vivo using unique online information-dependent acquisition with multiple mass defect filtering combined with dynamic background subtraction in positive ion mode. A total of 27 metabolites were detected and characterized, among which eight metabolites in liver microsomes and four metabolites in intestinal microflora were characterized, and 27 metabolites from rat plasma, bile, urine, feces, and a number of different tissue samples were characterized. Thirteen major metabolic pathways including hydrogenation, hydroxylation, glycosylation, methylation, acetylation, glucuronidation, and sulfation were observed to be attributable to the biotransformation of the metabolites. This study provides evidence for the presence of in vitro and in vivo metabolites and the pharmacokinetic mechanism of galangin. Moreover, the study promotes the further development and utilization of galangin and the plant from which it is derived, Hance.
高良姜素是一种天然存在的黄酮类化合物,可通过多种机制诱导多种药理活性和生物学效应。然而,高良姜素的体内代谢尚未得到充分研究,这意味着对其药效学和应用潜力的了解有限。本研究的目的是建立一种超高效液相色谱-四极杆飞行时间质谱方法,用于在体外和体内快速分析和鉴定高良姜素代谢产物,采用独特的在线信息依赖采集与多质量缺陷过滤相结合,并在正离子模式下进行动态背景扣除。共检测和鉴定了27种代谢产物,其中鉴定了肝微粒体中的8种代谢产物和肠道微生物群中的4种代谢产物,以及大鼠血浆、胆汁、尿液、粪便和一些不同组织样本中的27种代谢产物。观察到包括氢化、羟基化、糖基化、甲基化、乙酰化、葡萄糖醛酸化和硫酸化在内的13条主要代谢途径可归因于代谢产物的生物转化。本研究为高良姜素体外和体内代谢产物的存在及其药代动力学机制提供了证据。此外,该研究促进了高良姜素及其来源植物山奈的进一步开发和利用。