新型降糖降血脂黄酮衍生物S002-853在大鼠体内的原位吸收、蛋白结合及药代动力学研究。

N. Gautam, H. Kushwaha, R. Pratap, Shio Kumar Singh
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引用次数: 1

摘要

目的研究一种新型合成黄酮类化合物S002-853的原位吸收动力学、血浆蛋白结合及药动学特性。方法采用LC-MS/MS法定量血浆中S002-853的含量,采用HPLC-UV法进行原位样品分析。S002-853口服给药后,在温和碱性环境下的吸收速率常数为0.274/h。在浓度为1微克/毫升时,血浆蛋白结合率为26.37 +/- 2.58%。测定雄性大鼠单次口服剂量40 mg/kg和静脉注射剂量10 mg/kg后的药代动力学参数。口服后8 h血药浓度(C(max))为60.93 ng/ml。在口服给药后,观察到不规则的浓度-时间分布和二次峰。口服和静脉给药后,化合物的消除半衰期分别为19.56 h和16.30 h。S002-853口服和静脉给药后的AUC比较表明,口服剂量到达体循环的生物利用度仅为29.48%左右。结论原位研究表明S002-853在胃肠道吸收缓慢。S002-853也显示低血浆蛋白结合。口服和静脉给药后的药动学参数显示口服生物利用度低,平均停留时间长。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
In-situ absorption, protein binding and pharmacokinetic studies of S002-853, a novel antidiabetic and antidyslipidaemic flavone derivative in rats.
OBJECTIVES The aim of the study was to investigate the in-situ absorption kinetics, plasma protein binding and pharmacokinetic characteristics of a novel synthetic flavone derivative, S002-853, which shows pronounced antidiabetic and antidyslipidaemic activity. METHODS Quantification of S002-853 in plasma was performed by the LC-MS/MS method and in-situ sample analysis was carried out by the HPLC-UV method. KEY FINDINGS The absorption rate constant was 0.274/h in a mild alkaline environment, which S002-853 experiences in the intestine following oral dose administration. Plasma protein binding was found to be 26.37 +/- 2.58% at a concentration of 1 microg/ml. The pharmacokinetic parameters were determined in male rats after administration of a single 40 mg/kg oral dose and 10 mg/kg intravenous dose. The peak plasma concentration (C(max)) was found to be 60.93 ng/ml at 8 h after oral administration. Irregular concentration-time profiles with secondary peaks were observed after oral dose administration. The elimination half-life of the compound was 19.56 h and 16.30 h after oral and intravenous doses, respectively. Comparison of the AUC after oral and intravenous dosing of S002-853 indicates that only about 29.48% (bioavailability) of the oral dose reaches the systemic circulation. CONCLUSIONS In-situ study of S002-853 shows slow absorption from the gastrointestinal tract. S002-853 also shows low plasma protein binding. The pharmacokinetic parameters after oral and intravenous dose reveal low oral bioavailability and high mean residence time.
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