Research Center for Analytical Chemistry of Traditional Chinese Medicine, Institute of Chinese Materia Medica, China Academy of Chinese Medical Sciences, Beijing, 100700, P. R. China.
Department of Physiology, Institute of Acupuncture and Moxibustion, China Academy of Chinese Medical Sciences, Beijing, 100700, P. R. China.
J Sep Sci. 2022 Oct;45(19):3663-3678. doi: 10.1002/jssc.202100982. Epub 2022 Aug 8.
The stem bark of Magnolia officinalis is a traditional Chinese medicine for the treatment of abdominal distention and functional dyspepsia. The pharmacokinetics of three glycosides (magnoloside A, magnoloside B, and syringin) and two lignans (honokiol and magnolol) in both normal and functional dyspepsia rats were firstly investigated by ultra-performance liquid chromatography-triple quadrupole mass spectrometry method and the influences of the coexisting compounds on the pharmacokinetic parameters of honokiol and magnolol were also studied. It was found that all of the five target compounds were quickly absorbed and eliminated in both normal and functional dyspepsia rats, while, their residence time was significantly decreased in pathological states except magnoloside A. The coexisting compounds in the stem bark of M. officinalis significantly reduced absorption and increased elimination of honokiol in vivo. It's worth noticing that the volume of distribution of lignan was quite lower than that of a glycoside. Moreover, the metabolic profiling of magnoloside A, honokiol, and magnolol in vivo was analyzed by ultra-performance liquid chromatography-quadrupole time-of-flight mass spectrometry method, from which three prototypes were identified and 35 metabolites were putatively characterized, and 18 unknown metabolites were reasonably characterized for the first time. The results indicated that sulfation and glucuronidation were the main metabolic pathways of honokiol and magnolol.
厚朴的干皮是一种传统的中药,用于治疗腹胀和功能性消化不良。本研究首次采用超高效液相色谱-三重四极杆质谱法测定了正常和功能性消化不良大鼠中三种糖苷(厚朴酚 A、厚朴酚 B 和丁香脂素)和两种木脂素(和厚朴酚和厚朴酚)的药代动力学,并研究了共存化合物对和厚朴酚和厚朴酚药代动力学参数的影响。结果发现,所有 5 种目标化合物在正常和功能性消化不良大鼠中均迅速吸收和消除,但除厚朴酚 A 外,其在病理状态下的停留时间明显缩短。厚朴中存在的共存化合物显著降低了体内和厚朴酚的吸收,增加了其消除。值得注意的是,木脂素的分布体积明显低于糖苷。此外,还采用超高效液相色谱-四极杆飞行时间质谱法分析了体内厚朴酚 A、和厚朴酚和厚朴酚的代谢谱,从中鉴定出 3 种原型,并推测出 35 种代谢产物,首次合理地鉴定了 18 种未知代谢产物。结果表明,硫酸化和葡萄糖醛酸化是和厚朴酚和厚朴酚的主要代谢途径。