首页> 外文期刊>European neuropsychopharmacology: the journal of the European College of Neuropsychopharmacology >Direct and indirect interactions between antidepressant drugs and CYP2C6 in the rat liver during long-term treatment.
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Direct and indirect interactions between antidepressant drugs and CYP2C6 in the rat liver during long-term treatment.

机译:在长期治疗期间,抗抑郁药与CYP2C6在大鼠肝脏中的直接和间接相互作用。

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摘要

The aim of the present study was to investigate the influence of tricyclic antidepressants (TADs: imipramine, amitriptyline, clomipramine, desipramine), selective serotonin reuptake inhibitors (SSRIs: fluoxetine, sertraline) and novel antidepressant drugs (mirtazapine, nefazodone) on the activity of CYP2C6 measured as a rate of warfarin 7-hydroxylation. The reaction was studied in control liver microsomes in the presence of the antidepressants, as well as in microsomes of rats treated intraperitoneally (i.p.) for one day or two weeks with pharmacological doses of the drugs (imipramine, amitriptyline, clomipramine, nefazodone at 10 mg/kg i.p.; desipramine, fluoxetine, sertraline at 5mg/kg i.p.; mirtazapine at 3mg/kg i.p.), in the absence of the antidepressants in vitro. Some of the investigated antidepressant drugs added to liver microsomes of control rats inhibited the rate of 7-hydroxylation of warfarin. The obtained K(i) values indicated that nefazodone and fluoxetine were the most potent inhibitors of the studied reaction (K(i)=13 and 23microM, respectively), while tricyclic antidepressants and sertraline were weak in this respect (K(i)=70-127microM). A one-day (i.e. 24h) exposure to fluoxetine and mirtazapine resulted in a significant increase in the rate of the 7-hydroxylation of warfarin in rat liver microsomes. The other studied antidepressants did not significantly affect the rate of the CYP2C6-specific reaction. After two-week treatment with the investigated antidepressants, the increase in CYP2C6 activity observed after 24-h exposure to fluoxetine and mirtazapine was more pronounced. Moreover, unlike after one-day exposure, imipramine and sertraline significantly increased the activity of the enzyme. The other tricyclic antidepressants or nefazodone did not produce any significant effect when administered in vivo. The above-described enhancement of CYP2C6 activity correlated positively with the simultaneously observed increases in the enzyme protein level, which indicates the enzyme induction. The studied antidepressants increased the CYP2C6 protein level in the liver microsomes of rats after chronic treatment: imipramine to 174.6+/-18.3%, fluoxetine to 159.1+/-13.7%, sertraline to 135.3+/-11.2% and mirtazapine to 138.4+/-10.2% of the control. In summary, two different mechanisms of the antidepressant-CYP2C6 interaction have been found to operate in the rat liver: 1) direct inhibition of CYP2C6 shown in vitro mainly for nefazodone and fluoxetine, with their inhibitory effects being somewhat more potent than their action on human CYP2C9; 2) the in vivo induction of CYP2C6 by imipramine, fluoxetine, sertraline and mirtazapine.
机译:本研究的目的是研究三环类抗抑郁药(TAD:丙咪嗪,阿米替林,氯米帕明,地昔帕明),选择性5-羟色胺再摄取抑制剂(SSRI:氟西汀,舍曲林)和新型抗抑郁药(米氮平,奈法唑酮)的影响。 CYP2C6以华法林7-羟基化的速率测量。在有抗抑郁药存在的情况下,在对照肝微粒体中以及在腹腔内(ip)用药理剂量的药物(丙咪嗪,阿米替林,氯米帕明,奈法唑酮10 mg)治疗大鼠的微粒体中研究了该反应/ kg ip;在没有抗抑郁药的情况下,地昔帕明,氟西汀,舍曲林5mg / kg ip;米氮平3mg / kg ip。某些被研究的抗抑郁药被添加到对照组大鼠的肝微粒体中,抑制了华法林的7-羟基化速率。获得的K(i)值表明,奈法唑酮和氟西汀是所研究反应的最强抑制剂(分别为K(i)= 13和23microM),而三环类抗抑郁药和舍曲林在这方面较弱(K(i)= 70-127microM)。氟西汀和米氮平一天(即24小时)暴露导致大鼠肝微粒体中华法林7-羟基化的速率显着增加。其他研究的抗抑郁药没有显着影响CYP2C6特异性反应的速率。用研究的抗抑郁药治疗两周后,在氟西汀和米氮平暴露24小时后,CYP2C6活性增加。而且,与一日暴露后不同,丙咪嗪和舍曲林显着提高了酶的活性。当体内施用时,其他三环抗抑郁药或奈法唑酮未产生任何明显的作用。 CYP2C6活性的上述增强与同时观察到的酶蛋白水平的增加呈正相关,这表明酶的诱导。长期治疗后,研究的抗抑郁药可增加大鼠肝微粒体中的CYP2C6蛋白水平:丙咪嗪(dipramine)增至174.6 +/- 18.3%,氟西汀(fluoxetine)增至159.1 +/- 13.7%,舍曲林增至135.3 +/- 11.2%,米氮平增至138.4+ -10.2%的对照。综上所述,已发现抗抑郁药-CYP2C6相互作用的两种不同机制在大鼠肝脏中起作用:1)体外显示的CYP2C6直接抑制作用主要是对奈法唑酮和氟西汀的抑制作用,其抑制作用比对人的作用更有效。 CYP2C9; 2)丙咪嗪,氟西汀,舍曲林和米氮平的体内CYP2C6诱导作用。

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