期刊文献+

Chiral metabolism of propafenone in rat hepatic microsomes treated with two inducers 被引量:3

Chiral metabolism of propafenone in rat hepatic microsomes treated with two inducers
下载PDF
导出
摘要 AIM: To study the influence of inducers of drug metabolism enzyme, β-naphthoflavone (BNF) and dexamethasone (DEX), on the stereoselective metabolism of propafenone in the rat hepatic microsomes.METHODS: Phase I metabolism of propafenone was studied using the microsomes induced by BNF and DEX and the non-induced microsome was used as the control. The enzymatic kinetics parameters of propafenone enantiomers were calculated by regress analysis of Eadie-Hofstee Plots.Propafenone enantiomer concentrations were assayed by a chiral HPLC.RESULTS: The metabolite of propafenone, N-desalkylpropafenone, was found after incubstion of propafenone with the rat hepatic microsomes induced by BNF and DEX. In these two groups, the stereoselectivity favoring R ( - ) isomer was observed in metabolism st Iow substrate concentrations of racemic propafenone, but lost the stereoselectivity st high substrate concentrations.However; in control group, no stereeselectivity was observed. The enzyme kinetic parameters were: ① Km.Control group: R( - ) 83 ± 6, S( + ) 94 ± 7; BNF group: R (-)105 ± 6, S( + )128 ± 14; DEX group: R( - ) 86± 11, S( + ) 118 ± 16; ② vmax. Control group: R( - ) 0.75 ± 0.16, S( + ) 0.72±0.07; BNF group: R( - )1.04± 0.15, S( + )1.07±14; DEX group: R( - ) 0.93 ± 0.06, S( + ) 1.04 ± 0.09; (③)Clint. Control group: R( - ) 8.9± 1.1, S( + ) 7.6±0.7; BNFgroup: R( - )9.9±0.9, S( + )8.3±0.7; DEX group: R( - )10.9± 0.8, S( + ) 8.9 ± 0.9. The enantiomeric differences in Km and Clint were both significant, but not in Vmax, in BNF and DEX group. Whereas enantiomeric differences in three parameters were all insignificant in control group.Furthermore, Km and Umax were both significantly less than those in BNF or DEX group. In the rat liver microsorne induced by DEX, nimodipine (NDP) decreased the stereoselectivity in propafenone metabolism at Iow substrate concentration. The inhibition of NDP on the metabolism of propafenone was stereo.selective with R ( - )-isomer being impaired more than S ( + )-isomer. The inhibition constant (Ki) of S ( + )- and R ( - )-propafenone, calculated from Dixon plots, was 15.4 and 8.6 mg.L-1, respectively.CONCLUSION: CYP1A subfamily (induced by BNF) and CYP3A4(induced by DEX) have pronounced contribution to propafenone N-deselkylation which exhibited stereoselectivity depending on substrate concentration. The molecular base for this phenomenon is the stereoselectivity in affinity of subetrate to the enzyme activity centers instead of at the catalyzing sites. AIM: To study the influence of inducers of drug metabolism enzyme, beta-naphthoflavone (BNF) and dexamethasone (DEX), on the stereoselective metabolism of propafenone in the rat hepatic microsomes. METHODS: Phase I metabolism of propafenone was studied using the microsomes induced by BNF and DEX and the non-induced microsome was used as the control. The enzymatic kinetics parameters of propafenone enantiomers were calculated by regress analysis of Eadie-Hofstee Plots. Propafenone enantiomer concentrations were assayed by a chiral HPLC. RESULTS: The metabolite of propafenone, N-desalkylpropafenone, was found after incubation of propafenone with the rat hepatic microsomes induced by BNF and DEX. In these two groups, the stereoselectivity favoring R(-) isomer was observed in metabolism at low substrate concentrations of racemic propafenone, but lost the stereoselectivity at high substrate concentrations. However, in control group, no stereoselectivity was observed. The enzyme kinetic parameters were: (1) K(m). Control group: R(-) 83+/-6, S(+) 94+/-7; BNF group: R(-) 105+/-6, S(+)128+/-14; DEX group: R(-) 86+/-11, S(+) 118+/-16; (2)V(max). Control group: R(-) 0.75+/-0.16, S(+) 0.72+/-0.07; BNF group: R(-) 1.04+/-0.15, S(+)1.07+/-14; DEX group: R(-) 0.93+/-0.06, S(+) 1.04+/-0.09; (3)Cl(int). Control group: R(-) 8.9+/-1.1, S(+) 7.6+/-0.7; BNF group: R(-) 9.9+/-0.9, S(+)8.3+/-0.7; DEX group: R(-) 10.9+/-0.8, S(+) 8.9+/-0.9. The enantiomeric differences in K(m) and Cl(int) were both significant, but not in V(max), in BNF and DEX group. Whereas enantiomeric differences in three parameters were all insignificant in control group. Furthermore, K(m) and V(max) were both significantly less than those in BNF or DEX group. In the rat liver microsome induced by DEX, nimodipine (NDP) decreased the stereoselectivity in propafenone metabolism at low substrate concentration. The inhibition of NDP on the metabolism of propafenone was stereoselective with R(-)-isomer being impaired more than S(+)-isomer. The inhibition constant (Ki) of S(+)- and R(-)-propafenone, calculated from Dixon plots, was 15.4 and 8.6 mg x L(-1), respectively. CONCLUSION: CYP1A subfamily(induced by BNF) and CYP3A4 (induced by DEX) have pronounced contribution to propafenone N-desalkylation which exhibited stereoselectivity depending on substrate concentration. The molecular base for this phenomenon is the stereoselectivity in affinity of substrate to the enzyme activity centers instead of at the catalyzing sites.
出处 《World Journal of Gastroenterology》 SCIE CAS CSCD 2001年第6期830-835,共6页 世界胃肠病学杂志(英文版)
基金 Supported by the National Natural Science Foundation of China(No.39370805,N039770868) Zhejiang Natural Science Foundation(No.RC97016)of Zhejiang Province
关键词 propafenone/metabolism MITOCHONDRIA liver RAT optical rotation Animals Anti-Arrhythmia Agents Dexamethasone Male Microsomes, Liver Propafenone Rats Rats, Sprague-Dawley Research Support, Non-U.S. Gov't Stereoisomerism beta-Naphthoflavone
  • 相关文献

参考文献1

  • 1Dr. W. D. Paar,P. Frankus,H. J. Dengler.The metabolism of tramadol by human liver microsomes[J].The Clinical Investigator.1992(8)

同被引文献2

引证文献3

二级引证文献12

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部