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Application of an Inter-Species Extrapolation Method for the Prediction of Drug Interactions between Propolis and Duloxetine in Humans

机译:物种间外推法在人体中蜂胶和二氧氟沙汀的药物相互作用预测

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摘要

Duloxetine (DLX) is a potent drug investigated for the treatment of depression and urinary incontinence. DLX is extensively metabolized in the liver by two P450 isozymes, CYP2D6 and CYP1A2. Propolis (PPL) is one of the popular functional foods known to have effects on activities of CYPs, including CYP1A2. Due to the high probability of using DLX and PPL simultaneously, the present study was designed to investigate the potent effect of PPL on pharmacokinetics (PKs) of DLX after co-administration in humans. A PK study was first conducted in 18 rats (n = 6/group), in which the plasma concentration of DLX and its major metabolite 4-hydroxy duloxetine (4-HD) with or without administration of PPL was recorded. Population PKs and potential effects of PPL were then analyzed using NONMEM software. Lastly, these results were extrapolated from rats to humans using the allometric scaling and the liver blood flow method. PPL (15,000 mg/day) exerts a statistically significant increase in DLX exposures at steady state, with a 20.2% and 24.6% increase in DLX Cmax,ss and the same 28.0% increase in DLX AUCss when DLX (40 or 60 mg) was administered once or twice daily, respectively. In conclusion, safety issues are required to be attended to when individuals simultaneously use DLX and PPL at high doses, and the possibility of interactions between DLX and PPL might be noted.
机译:度洛西汀(DLX)是研究抑郁症和尿失禁的治疗效药物。 DLX广泛在肝脏中由两个P450同工酶CYP2D6和CYP1A2代谢。蜂胶(PPL)是已知对的CYP的活动,包括CYP1A2效应的流行的功能性食品中的一个。由于同时使用DLX和PPL的概率高,本研究旨在探讨PPL对药代动力学(PKS)DLX的人类共同给药后的重要影响。甲PK研究最初是在18只大鼠(n = 6 /组),其中DLX的血浆浓度及其主要代谢产物4-羟基度洛西汀(4-HD)具有或不具有PPL的给药记录进行。人口的PK和PPL的潜在影响,然后使用NONMEM软件进行分析。最后,这些结果从大鼠外推到使用异速生长尺度和肝脏的血流量法人类。 PPL(15,000毫克/天)施加在稳定状态DLX曝光统计学显著增加,在DLX的C max,β增加20.2%和24.6%,而在DLX血浆浓度曲线的28.0%增加时DLX(40或60毫克)为相同给药一次或每日分别两次。总之,需要安全问题来招待当个体在高剂量时同时使用DLX和PPL和DLX和PPL之间相互作用的可能性可能会注意到。

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