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大鼠肝微粒体中反式曲马多代谢及反式O-去甲基曲马多形成的立体选择性

Stereoselectivity in trans-tramadol metabolism and trans-O-demethyltramadol formation in rat liver microsomes.

作者信息

Liu Hui-Chen, Wang Na, Yu Yang, Hou Yan-Ning

机构信息

Department of Clinical Pharmacology, Bethune International Peace Hospital, Shijiazhuang 050082, China.

出版信息

Acta Pharmacol Sin. 2003 Jan;24(1):85-90.

Abstract

AIM

To study the stereoselectivity in trans-tramadol [(+/-)-trans-T] metabolism and trans-O-demethyltramadol (M1) formation.

METHODS

(+)-, (-)-, Or (+/-)-trans-T was separately incubated with rat liver microsomes in vitro. The concentrations of (+/-)-trans-T and M1 enantiomers were determined by high performance capillary electrophoresis (HPCE).

RESULTS

When each enantiomer of (+/-)-trans-T was incubated with rat liver microsomes, the metabolic rate of (+)-trans-T was lower than that of (-)-trans-T. The kinetics of (+)-, (-)-M1 formation was found to fit the single-enzyme Michaelis-Menten model. The Vmax and CLint of (+)-M1 formation were lower than those of (-)-M1 formation. When (+/-)-trans-T was used as the substrate, the metabolic rates of (+)-, (-)-trans-T, and the formation rates of (+)-M1, (-)-M1 decreased to different extents. Dextromethorphan (Dex), propafenone (Pro), and fluoxetine (Flu) could inhibit both the metabolism of (+/-)-trans-T enantiomers and the formation of M1 enantiomers. Pro and Flu were shown to enhance the stereoselectivity in both (+/-)-trans-T metabolism and M1 formation, and Dex could only enhance that in M1 formation.

CONCLUSION

(+/-)-Trans-T metabolism and M1 formation were stereoselective, (-)-trans-T being preferentially metabolized and (-)-M1 being preferentially formed. There was interaction in metabolism between (+/-)-trans-T enantiomers. Dex, Pro, and Flu had different effects on the stereoselectivity.

摘要

目的

研究反式曲马多[(±)-反式-T]代谢及反式-O-去甲基曲马多(M1)形成过程中的立体选择性。

方法

将(+)-、(-)-或(±)-反式-T分别与大鼠肝微粒体进行体外孵育。采用高效毛细管电泳(HPCE)测定(±)-反式-T和M1对映体的浓度。

结果

当(±)-反式-T的各对映体与大鼠肝微粒体孵育时,(+)-反式-T的代谢速率低于(-)-反式-T。发现(+)-、(-)-M1形成的动力学符合单酶米氏模型。(+)-M1形成的Vmax和CLint低于(-)-M1形成的Vmax和CLint。当以(±)-反式-T为底物时,(+)-、(-)-反式-T的代谢速率以及(+)-、(-)-M1的形成速率均有不同程度降低。右美沙芬(Dex)、普罗帕酮(Pro)和氟西汀(Flu)均可抑制(±)-反式-T对映体的代谢及M1对映体的形成。Pro和Flu可增强(±)-反式-T代谢及M1形成过程中的立体选择性,而Dex仅能增强M1形成过程中的立体选择性。

结论

(±)-反式-T代谢及M1形成具有立体选择性,(-)-反式-T优先被代谢,(-)-M1优先形成。(±)-反式-T对映体之间存在代谢相互作用。Dex、Pro和Flu对立体选择性有不同影响。

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