Gyamfi M A, Hokama N, Oppong-Boachie K, Aniya Y
Laboratory of Physiology and Pharmacology, School of Health Sciences, Faculty of Medicine, University of the Ryukyus, Nishihara, Okinawa, Japan.
Hum Exp Toxicol. 2000 Nov;19(11):623-31. doi: 10.1191/096032700667732543.
In this study we examined the effect of the aqueous extract of Thonningia sanguinea (T.S.) on 7-ethoxyresorufin O-deethylase (EROD, CYP1A1), 7-pentoxyresorufin O-dealkylase (PROD, CYP2B1/2), 7-methoxyresorufin O-demethylase (MROD, CYP1A2), aniline hydroxylase (aniline, CYP2E1), p-nitrophenol hydroxylase (PNPH, CYP2E1) and erythromycin N-demethylase (ERDM, CYP3A1) in rat liver in vitro and in vivo. Although T.S. extract increased ERDM activity in induced rat liver microsomes, it showed a dose-dependent inhibitory effect in vitro on other P450 monooxygenase activities particularly EROD and PROD, which are mediated primarily by CYP1A1 and CYP2B1/2, respectively. PROD, EROD and MROD activities were also decreased by 18%, 19% and 40%, respectively, in hepatic microsomes prepared from rats treated with T.S. extract for 3 days. Kinetic analysis of CYP activity of 3-methylchloranthrene-induced microsomes demonstrated that T.S. inhibited EROD and MROD activities by a noncompetitive and competitive mechanism, respectively. The analysis of alterations produced by T.S. on PROD kinetic parameters in phenobarbital-induced microsomes suggested that the inhibition is noncompetitive. Pretreatment of rats with T.S. prolonged pentobarbital and phenobarbital sleeping time; however, plasma phenobarbital concentration determined on awakening showed no significant difference between control and T.S.-treated rats. T.S. was also found to be a potent inhibitor of the liver cytosolic glutathione S-transferase. These data suggest that selective modulation of CYP isoenzymes by T.S. might contribute to protection of the liver from xenobiotic-induced intoxication or to alteration of the action of drug(s) concomitantly administered besides its antioxidative properties.
在本研究中,我们检测了血红托宁(T.S.)水提取物对大鼠肝脏中7-乙氧基异吩恶唑酮O-脱乙基酶(EROD,CYP1A1)、7-戊氧基异吩恶唑酮O-脱烷基酶(PROD,CYP2B1/2)、7-甲氧基异吩恶唑酮O-脱甲基酶(MROD,CYP1A2)、苯胺羟化酶(苯胺,CYP2E1)、对硝基苯酚羟化酶(PNPH,CYP2E1)和红霉素N-脱甲基酶(ERDM,CYP3A1)的体内外作用。尽管T.S.提取物可增加诱导的大鼠肝微粒体中的ERDM活性,但在体外它对其他P450单加氧酶活性表现出剂量依赖性抑制作用,尤其是EROD和PROD,它们分别主要由CYP1A1和CYP2B1/2介导。在用T.S.提取物处理3天的大鼠制备的肝微粒体中,PROD、EROD和MROD活性也分别降低了18%、19%和40%。对3-甲基氯蒽诱导的微粒体的CYP活性进行动力学分析表明,T.S.分别通过非竞争性和竞争性机制抑制EROD和MROD活性。对T.S.对苯巴比妥诱导的微粒体中PROD动力学参数产生的变化进行分析表明,这种抑制作用是非竞争性的。用T.S.预处理大鼠可延长戊巴比妥和苯巴比妥的睡眠时间;然而,苏醒时测定的血浆苯巴比妥浓度在对照组和T.S.处理组大鼠之间没有显著差异。还发现T.S.是肝细胞质谷胱甘肽S-转移酶的有效抑制剂。这些数据表明,T.S.对CYP同工酶的选择性调节可能有助于保护肝脏免受外源化合物诱导的中毒,或改变同时给药药物的作用,此外它还具有抗氧化特性。