Qi Wen, Chen Fangfang, Sun Jiahong, Simpkins James W, Yuan Dan
Department of Traditional Chinese Medicines, Shenyang Pharmaceutical University, Shenyang, People's Republic of China.
Center for Basic and Translational Stroke Research, Department of Physiology and Pharmacology, Robert C. Byrd Health Sciences Center, West Virginia University, Morgantown, United States.
Planta Med. 2015 Jan;81(1):46-55. doi: 10.1055/s-0034-1383357. Epub 2014 Dec 17.
Isocorynoxeine, one of the major alkaloids from Uncaria Hook, shows the effects of lowering blood pressure, vasodilatation, and protection against ischemia-induced neuronal damage. In this paper, the metabolism of isocorynoxeine was investigated in rats. Twelve metabolites and the parent drug were isolated by using solvent extraction and repeated chromatographic methods, and determined by spectroscopic methods including UV, MS, NMR, and CD experiments. Seven new compounds were identified as 11-hydroxyisocorynoxeine, 5-oxoisocorynoxeinic acid-22-O-β-D-glucuronide, 10-hydroxyisocorynoxeine, 17-O-demethyl-16,17-dihydro-5-oxoisocorynoxeine, 5-oxoisocorynoxeinic acid, 21-hydroxy-5-oxoisocorynoxeine, and oxireno[18, 19]-5-oxoisocorynoxeine, together with six known compounds identified as isocorynoxeine, 18,19-dehydrocorynoxinic acid, 18,19-dehydrocorynoxinic acid B, corynoxeine, isocorynoxeine-N-oxide, and corynoxeine-N-oxide. Possible metabolic pathways of isocorynoxeine are proposed. Furthermore, the activity assay for the parent drug and some of its metabolites showed that isocorynoxeine exhibited a significant neuroprotective effect against glutamate-induced HT22 cell death at the maximum concentration. However, little or weak neuroprotective activities were observed for M-3, M-6, M-7, and M-10. Our present study is important to further understand their metabolic fate and disposition in humans.
异钩藤碱是钩藤属植物中的主要生物碱之一,具有降血压、血管舒张以及保护免受缺血诱导的神经元损伤等作用。本文对异钩藤碱在大鼠体内的代谢进行了研究。通过溶剂萃取和反复色谱法分离出12种代谢产物和母体药物,并采用紫外、质谱、核磁共振和圆二色光谱等光谱方法进行测定。鉴定出7种新化合物,分别为11-羟基异钩藤碱、5-氧代异钩藤碱-22-O-β-D-葡萄糖醛酸苷、10-羟基异钩藤碱、17-O-去甲基-16,17-二氢-5-氧代异钩藤碱、5-氧代异钩藤碱酸、21-羟基-5-氧代异钩藤碱和环氧乙烷[18,19]-5-氧代异钩藤碱,同时鉴定出6种已知化合物,分别为异钩藤碱、18,19-脱氢钩藤碱酸、18,19-脱氢钩藤碱酸B、钩藤碱、异钩藤碱-N-氧化物和钩藤碱-N-氧化物。提出了异钩藤碱可能的代谢途径。此外,对母体药物及其一些代谢产物的活性测定表明,异钩藤碱在最大浓度时对谷氨酸诱导的HT22细胞死亡具有显著的神经保护作用。然而,M-3、M-6、M-7和M-10的神经保护活性较弱或几乎没有。我们目前的研究对于进一步了解它们在人体内的代谢命运和处置情况具有重要意义。