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首页> 外文期刊>Xenobiotica: the fate of foreign compounds in biological systems >Effects of diammonium glycyrrhizinate on the pharmacokinetics of aconitine in rats and the potential mechanism.
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Effects of diammonium glycyrrhizinate on the pharmacokinetics of aconitine in rats and the potential mechanism.

机译:甘草酸二铵对大鼠乌头碱药代动力学的影响及其潜在机制。

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摘要

1. The objective of this study was to investigate the effects of diammonium glycyrrhizinate on the pharmacokinetics of aconitine in rats and the potential mechanism. 2. After oral administration of diammonium glycyrrhizinate (50 mg kg(-1)), the peak plasma concentration (C(max)), area under the plasma concentration-time curve from zero to time tau (AUC(0-tau)), and absolute bioavailability of aconitine (0.2 mg kg(-1)) significantly increased 1.64-, 1.63- and 1.85-fold, respectively, but there was no significant change in half life (t(1/2)) or clearance (CL). In the other two routes of administration via the tail vein and hepatic portal vein, diammonium glycyrrhizinate (15 mg kg(-1)) did not affect any of the pharmacokinetic parameters of aconitine (0.02 mg kg(-1)). Thus, diammonium glycyrrhizinate can enhance the absorption of aconitine, leading to higher oral bioavailability and plasma levels, but it does not influence its elimination. 3. Moreover, an in vitro everted gut sac model and Ussing chamber model were used to investigate the potential mechanism. Results from bidirectional transport and inhibition studies demonstrated that P-glycoprotein was the main efflux transporter involved in the absorption of aconitine in rats. The absorption enhancement effect of diammonium glycyrrhizinate should be mainly attributed to inhibiting the activity of P-glycoprotein rather than to the influence on the paracellular or transcellular transport.
机译:1.本研究的目的是研究甘草酸二铵对大鼠乌头碱药代动力学的影响及其潜在机制。 2.口服甘草次酸二铵(50 mg kg(-1))后,血浆峰值浓度(C(max)),血浆浓度-时间曲线下的面积从零到时间tau(AUC(0-tau))乌头碱(0.2 mg kg(-1))的绝对生物利用度分别显着提高了1.64、1.63和1.85倍,但半衰期(t(1/2))或清除率(CL )。在通过尾静脉和肝门静脉给药的其他两种途径中,甘草酸二铵(15 mg kg(-1))不会影响乌头碱(0.02 mg kg(-1))的任何药代动力学参数。因此,甘草次酸二铵可以增强乌头碱的吸收,从而提高口服生物利用度和血浆水平,但不影响其消除。 3.此外,还使用了体外外翻肠囊模型和Ussing Chamber模型来研究其潜在机制。双向转运和抑制研究的结果表明,P-糖蛋白是参与大鼠乌头碱吸收的主要外排转运蛋白。甘草次酸二铵的吸收增强作用应主要归因于抑制P-糖蛋白的活性,而不是对细胞旁或跨细胞转运的影响。

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