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脂多糖对大鼠体内黄嘌呤处置的影响。

The effect of lipopolysaccharide on the disposition of xanthines in rats.

作者信息

Wang L, Hasegawa T, Nadai M, Muraoka I, Nabeshima T, Kato N

机构信息

Department of Hospital Pharmacy, Nagoya University School of Medicine, Aichi, Japan.

出版信息

J Pharm Pharmacol. 1993 Jan;45(1):34-8. doi: 10.1111/j.2042-7158.1993.tb03675.x.

Abstract

The effect of lipopolysaccharide (LPS) isolated from Klebsiella pneumoniae O3 on the pharmacokinetic behaviour and metabolism of the xanthines, theophylline and 1-methyl-3-propylxanthine (MPX), which are mainly metabolized by the liver, was investigated in rats. LPS was infused at 0.25 mg kg-1 over a period of 20-30 min, 2 h before the administration of theophylline (10 mg kg-1) or MPX (2.5 mg kg-1). Concentrations of both xanthines in plasma and concentrations of the parent drug and metabolites in urine were measured by HPLC. Model-independent methods were applied to estimate the pharmacokinetic parameters for both xanthines. No significant changes in the pharmacokinetic parameters or metabolism of theophylline were observed in rats pretreated with LPS. However, the total body clearance and volume of distribution of MPX were significantly increased by pretreatments with LPS. Significant decreases in the binding capacity and number of binding sites on the albumin molecule were observed in the presence of LPS. Changes occurring in the protein binding behaviour as a result of the introduction of LPS is a primary factor which not only increases the volume of distribution but also increases total body clearance. These results indicate that LPS has no effect on the pharmacokinetics and metabolic pathway of theophylline although it changes the disposition of MPX due to decreases in the extent of the protein binding of MPX which is highly bound to protein.

摘要

研究了从肺炎克雷伯菌O3分离的脂多糖(LPS)对主要在肝脏中代谢的黄嘌呤、茶碱和1-甲基-3-丙基黄嘌呤(MPX)的药代动力学行为和代谢的影响。在给予茶碱(10mg/kg)或MPX(2.5mg/kg)前2小时,以0.25mg/kg的剂量在20 - 30分钟内输注LPS。通过高效液相色谱法测定血浆中两种黄嘌呤的浓度以及尿液中母体药物和代谢物的浓度。应用非模型方法估计两种黄嘌呤的药代动力学参数。在用LPS预处理的大鼠中,未观察到茶碱的药代动力学参数或代谢有显著变化。然而,LPS预处理显著增加了MPX的全身清除率和分布容积。在存在LPS的情况下,观察到白蛋白分子上的结合能力和结合位点数量显著降低。由于引入LPS而发生的蛋白质结合行为变化是一个主要因素,它不仅增加了分布容积,还增加了全身清除率。这些结果表明,LPS对茶碱的药代动力学和代谢途径没有影响,尽管它由于与蛋白质高度结合的MPX的蛋白质结合程度降低而改变了MPX的处置。

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