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首页> 外文期刊>Pharmaceutical Biology >Effects of glycyrrhizin on the pharmacokinetics of paeoniflorin in rats and its potential mechanism
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Effects of glycyrrhizin on the pharmacokinetics of paeoniflorin in rats and its potential mechanism

机译:甘草甜素对pa药苷在大鼠体内药代动力学的影响及其潜在机制

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Context: Paeoniflorin is reported to possess numerous pharmacological activities. Paeoniflorin and glycyrrhizin are always used together for the treatment of disease in China clinics; however, the drug-drug interaction between glycyrrhizin and paeoniflorin is still unknown. Objective: This study investigates the effects of glycyrrhizin on the pharmacokinetics of paeoniflorin in rats. Materials and methods: The pharmacokinetics of orally administered paeoniflorin (20?mg/kg) with or without glycyrrhizin pre-treatment (at a dose of 100?mg/kg/day for 7 days) were investigated in male Sprague-Dawley rats using LC-MS/MS. Additionally, Caco-2 cell transwell model and rat liver microsome incubation experiments were also conducted to investigate its potential mechanism. Results: The results showed that when the rats were pre-treated with glycyrrhizin, the Cmax of paeoniflorin decreased from 59.57?±?10.24 to 45.36?±?8.61?ng/mL, and AUC0-inf also decreased from 282.02?±?35.06 to 202.29?±?28.28?μg·h/L. The t1/2 value of paeoniflorin decreased from 8.48?±?2.01 to 5.88?±?1.15?h (p??0.05). The Caco-2 cell transwell experiments indicated that glycyrrhizin could increase the efflux ratio of paeoniflorin from 2.71 to 3.52, and the rat liver microsome incubation experiments showed that glycyrrhizin could significantly increase its intrinsic clearance rate from 53.7?±?4.6 to 85.6?±?7.1?μL/min/mg protein. Conclusions: These results indicated that glycyrrhizin could affect the pharmacokinetics of paeoniflorin, and it might work through decreasing the absorption of paeoniflorin by inducing the activity of P-gp or through increasing the clearance rate in rat liver by inducing the activity of CYP450 enzyme.
机译:背景:据报道Pa药苷具有许多药理活性。 China药苷和甘草甜素在中国诊所总是一起用于疾病的治疗。然而,甘草甜素和pa药苷之间的药物相互作用尚不清楚。目的:研究甘草甜素对pa药苷在大鼠体内药代动力学的影响。材料和方法:在雄性Sprague-Dawley大鼠中,采用LC研究了口服或不使用甘草甜素预处理(剂量为100?mg / kg /天,共7天)的pa药苷(20?mg / kg)的药代动力学。 -MS / MS。此外,还进行了Caco-2细胞转运模型和大鼠肝微粒体温育实验,以研究其潜在机制。结果:结果显示,当用甘草甜素预处理时,pa药苷的Cmax从59.57?±?10.24降至45.36?±?8.61?ng / mL,AUC0-inf也从282.02?±?35.06降低至202.29±±28.28μg·h / L。 eon药苷的t1 / 2值从8.48±2.01降至5.88±1.15h(p <0.05)。 Caco-2细胞转运实验表明,甘草甜素可将pa药苷的流出比从2.71增加到3.52,大鼠肝微粒体温育实验表明,甘草甜素可将其固有清除率从53.7?±?4.6显着提高到85.6?±?。 7.1?L / min / mg蛋白质。结论:这些结果表明甘草甜素可能影响pa药苷的药代动力学,并且可能通过诱导P-gp活性降低decreasing药苷的吸收或通过诱导CYP450酶的活性增加大鼠肝脏的清除率而起作用。

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