Zhang Xin-Shi, Ren Wei, Bian Bao-Lin, Zhao Hai-Yu, Wang Shu
Department of Pharmacy, Hebei North University, Zhangjiakou, 075000, China.
Institute of Chinese Materia Medica, China Academy of Chinese Medical Sciences, Beijing, 100700, China.
Rapid Commun Mass Spectrom. 2015 Sep 30;29(18):1641-50. doi: 10.1002/rcm.7262.
Tussilagone is a major component in Tussilago farfara that has been widely used as an anti-tussive herbal medicine for the treatment of bronchitis, cough and asthmatic disorders in the clinic. However, its metabolism has been poorly investigated. In order to clarify its in vitro metabolism, a comparative analysis of its metabolic profile in rat liver microsomes (RLMs) and human liver microsomes (HLMs) was carried out. Further, the cytochrome P450 isoforms (CYPs) involved in the metabolism were investigated.
In this work, the biotransformation of tussilagone in RLMs and HLMs was compared using ultra-high-performance liquid chromatography coupled with high-resolution LTQ-Orbitrap mass spectrometry (UHPLC/HRMS) and the CYPs involved in the metabolism were further investigated by recombinant human CYP enzymes.
Totally, nine metabolites of tussilagone were identified in RLMs and HLMs based on the proposed MS/MS fragmentation pathways of tussilagone and the accurate MS/MS spectra. Among them, one metabolite (M9) was detected in both RLMs and HLMs while the other eight metabolites were only detected in HLMs. Three hydroxylation metabolites (M6, M7 and M8) were detected in the assay with individual recombinant P450s incubation. M6 was detected in all CYPs except CYP2A6 while M7 and M8 were only observed in CYP3A4.
The HR-ESI-MS/MS fragmentation behavior of tussilagone and its metabolic profile in RLMs and HLMs were investigated for the first time. The results demonstrated that the biotransformation of tussilagone involved hydrolysis of ester bonds at C-14 and hydroxylation in the side chains at C-12, C-5' or C-6'. Among the CYPs, CYP3A4 played an important role in the hydroxylation reaction of tussilagone in vitro. Furthermore, the results indicated a species-related difference in the metabolism of tussilagone between RLMs and HLMs. This work provided basic information for the metabolism of tussilagone in RLMs and HLMs, which would help to better understand the pharmacological activities of tussilagone.
款冬酮是款冬中的主要成分,在临床上已被广泛用作镇咳草药,用于治疗支气管炎、咳嗽和哮喘疾病。然而,对其代谢的研究较少。为了阐明其体外代谢情况,对其在大鼠肝微粒体(RLMs)和人肝微粒体(HLMs)中的代谢谱进行了比较分析。此外,还研究了参与代谢的细胞色素P450同工酶(CYPs)。
在本研究中,使用超高效液相色谱联用高分辨率LTQ-Orbitrap质谱(UHPLC/HRMS)比较了款冬酮在RLMs和HLMs中的生物转化,并通过重组人CYP酶进一步研究了参与代谢的CYPs。
根据款冬酮的质谱/质谱碎裂途径和精确的质谱/质谱谱图,在RLMs和HLMs中总共鉴定出了九种款冬酮代谢物。其中,一种代谢物(M9)在RLMs和HLMs中均被检测到,而其他八种代谢物仅在HLMs中被检测到。在单独的重组P450孵育试验中检测到了三种羟基化代谢物(M6、M7和M8)。除CYP2A6外,在所有CYPs中均检测到M6,而仅在CYP3A4中观察到M7和M8。
首次研究了款冬酮的高分辨电喷雾质谱/质谱碎裂行为及其在RLMs和HLMs中的代谢谱。结果表明,款冬酮的生物转化涉及C-14位酯键的水解和C-12、C-5'或C-6'侧链的羟基化。在CYPs中,CYP3A4在款冬酮体外羟基化反应中起重要作用。此外,结果表明RLMs和HLMs之间款冬酮代谢存在种属差异。这项工作为款冬酮在RLMs和HLMs中的代谢提供了基础信息,这将有助于更好地理解款冬酮的药理活性。