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首页> 外文期刊>Biomedical Chromatography: An International Journal Devoted to Research in Chromatographic Methodologies and Their Applications in the Biosciences >Determination of propranolol concentration in small volume of rat plasma by HPLC with fluorometric detection.
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Determination of propranolol concentration in small volume of rat plasma by HPLC with fluorometric detection.

机译:高效液相色谱-荧光检测法测定小剂量大鼠血浆中心得安的浓度。

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摘要

A simple, rapid and sensitive fluorescence high performance liquid chromatographic method was developed to determine propranolol concentration in the small volume of rat plasma without the solvent extraction step using pronethanol as the internal standard. The analysis was accomplished using a 5 microm CAPCELL PAK analytical cyano column at room temperature and a mobile phase consisted of 1% aqueous acetic acid containing 0.2% triethylamine and acetonitrile (65:35, v/v; pH 3.8). The flow-rate was kept at 0.5 mL/min and column effluent was monitored with a fluorescence detector at an excitation wavelength of 230 nm and an emission wavelength of 340 nm. Retention times for pronethalol and propranolol were 8.5 min and 10.5 min, respectively. Linear regressions for the standard curves were linear in the range 2-800 ng/mL, giving correlation coefficients above 0.998. The detection limit was 1.34 ng/mL. No analytical interference was observed from endogenous components in rat plasma. This simple and sensitive assay method was feasibly applied to the pharmacokinetic study of propranolol after intravenous administration of 2 mg/kg of propranolol to normal and carbon tetrachloride-induced liver cirrhotic rats. Copyright 2001 John Wiley & Sons, Ltd.
机译:开发了一种简单,快速,灵敏的荧光高效液相色谱方法,无需使用丙醇作为内标的溶剂萃取步骤即可测定小体积大鼠血浆中的心得安浓度。使用5微米CAPCELL PAK分析型氰基色谱柱在室温下完成分析,流动相由1%含0.2%三乙胺和乙腈的乙酸水溶液(65:35,v / v; pH 3.8)组成。流速保持在0.5 mL / min,并用荧光检测器在230 nm的激发波长和340 nm的发射波长下监测柱流出物。普萘洛尔和普萘洛尔的保留时间分别为8.5分钟和10.5分钟。标准曲线的线性回归在2-800 ng / mL范围内呈线性,相关系数高于0.998。检出限为1.34 ng / mL。在大鼠血浆中未观察到内源性成分的分析干扰。这种简单而灵敏的测定方法已可行地应用于对正常和四氯化碳诱导的肝硬化大鼠静脉注射2 mg / kg普萘洛尔后普萘洛尔的药代动力学研究。版权所有2001 John Wiley&Sons,Ltd.

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