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首页> 外文期刊>Journal of Ethnopharmacology: An Interdisciplinary Journal Devoted to Bioscientific Research on Indigenous Drugs >Pharmacokinetic changes of unbound theophylline are due to plasma protein binding displacement and CYP1A2 activity inhibition by baicalin in rats
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Pharmacokinetic changes of unbound theophylline are due to plasma protein binding displacement and CYP1A2 activity inhibition by baicalin in rats

机译:未结合茶碱的药代动力学变化是由于黄ical苷在大鼠中的血浆蛋白结合位移和CYP1A2活性抑制

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摘要

Ethnopharmacological relevance: Baicalin is one of the major bioactive constituents of Scutellariae Radix, the root of Scutellariae baicalensis Georgi and possesses a wide variety of pharmacological properties. Aim of the study To elucidate the effect of baicalin on the pharmacokinetics of theophylline in rats, focusing on plasma protein binding displacement and inhibition effect on CYP1A2 in vivo and in vitro. Materials and methods: The study was a randomized, three-period crossover design. Nine rats were given saline (control) or 450 mg/kg baicalin (dosage regimen A or B). Dosage regimen A was administered once at 0 h. Dosage regimen B was divided into three dosages (225,112.5, 112.5 mg/kg) and was given at 0, 2 and 4 h, respectively. Then theophylline (5 mg/kg, i.v.) was administered immediately. The effect of baicalin on CYP1A2 activity was determined by metabolism of phenacetin in vitro and plasma protein binding of theophylline was determined by ultrafiltration. Results: Cmax decreased from (12.4±1.6) to (8.7±0.9) and (8.6±2.0) mg/L, T1/2 increased by 116 and 96%, Vd increased by 51 and 49% for total theophylline in rats treated with dosage regimen A and B of baicalin, respectively. Cmax was significantly increased, Vd decreased by 43 and 29% for unbound theophylline in rats treated with dosage regimen A and B of baicalin, respectively (P0.01). T1/2 of unbound theophylline increased by 104% only in rats treated with dosage regimen B. No significant effects on the CL and AUC of both total and unbound theophylline were observed in the rats treated with dosage regimen A, but the CL decreased and AUC increased for total theophylline and CL decreased for unbound theophylline in the group treated with dosage regimen B (P0.05). Correlation analysis showed that the mean unbound theophylline (%) and mean baicalin concentration was in good correlation (P0.01). Baicalin decreased metabolism of phenacetin and exhibited a mixed-type inhibition in rat liver microsomes, with a Ki value of 88.1 μM in vitro. Moreover baicalin was a competitive displacer of theophylline from plasma protein in vitro. Conclusions: The changes in Cmax, T1/2, CL and AUC of theophylline due to baicalin may be attributed to two mechanisms, plasma protein binding displacement and CYP1A2 activity inhibition.
机译:民族药理学意义:黄Ba苷是黄Rad的主要生物活性成分之一,黄S是黄Ge的根,具有多种药理特性。研究的目的为阐明黄ical苷对大鼠茶碱的药代动力学的影响,重点在于血浆蛋白结合位移以及对体内和体外对CYP1A2的抑制作用。材料和方法:该研究是一项随机的,三期交叉设计。给予九只大鼠生理盐水(对照)或450 mg / kg黄ical苷(剂量方案A或B)。剂量方案A在0小时施用一次。方案B分为三种剂量(225,112.5,112.5 mg / kg),分别在0、2和4小时给药。然后立即施用茶碱(5mg / kg,静脉内)。通过非那西丁的体外代谢确定黄ical苷对CYP1A2活性的影响,并通过超滤确定茶碱的血浆蛋白结合。结果:用茶碱处理的大鼠总茶碱的Cmax从(12.4±1.6)降至(8.7±0.9)和(8.6±2.0)mg / L,T1 / 2分别增加116和96%,Vd分别增加51和49%黄ical苷的剂量方案A和B。黄ical苷A和B给药方案分别使未结合的茶碱的Cmax显着升高,Vd降低43%和29%(P <0.01)。未约束茶碱的T1 / 2仅在用剂量方案B治疗的大鼠中增加104%。在用剂量方案A治疗的大鼠中未观察到总和未结合茶碱对CL和AUC的显着影响,但CL下降且AUC剂量方案B治疗组总茶碱升高,未结合茶碱CL降低(P <0.05)。相关分析表明,未结合茶碱的平均含量(%)与黄ical苷的平均含量具有良好的相关性(P <0.01)。黄ical苷降低非那西丁的代谢并在大鼠肝微粒体中表现出混合型抑制作用,体外Ki值为88.1μM。此外,黄ical苷是体外血浆蛋白中茶碱的竞争性置换剂。结论:黄ical苷引起茶碱的Cmax,T1 / 2,CL和AUC的变化可能归因于血浆蛋白结合移位和CYP1A2活性抑制两个机制。

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