大鼠血浆中灰黄霉素HPLC测定方法的建立与验证:在药代动力学研究中的应用。

Bo Wei, Dong Liang, Theodore R Bates
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引用次数: 13

摘要

以华法林为内标,建立了一种简便、特异、灵敏、快速的高效液相色谱法测定小体积大鼠血浆中灰黄霉素的方法。生物样品的制备包括用乙腈简单提取,然后用水相流动缓冲液(20mm磷酸二氢钠,pH 3.5)稀释,以消除任何色谱溶剂的影响。灰黄霉素和华法林在C(18)反相柱(4.6 × 150 mm, 3.5微米)上进行基线分离和定量,流动相为20 mm磷酸二氢钠-乙腈水溶液(55:45,v/v, pH 3.5),流速为1.0 mL/min,荧光检测(λ(激发)= 300 nm, λ(发射)= 418 nm)。结果表明,该方法在10 ~ 2500 ng/mL的血浆灰黄霉素浓度范围内呈线性,平均相关系数为0.9996。日内、日间准确度(相对误差)分别为0.89% ~ 9.26%和0.71% ~ 7.68%。日内精度(变异系数)小于3.0%,日间精度小于7.5%。大鼠血浆中灰黄霉素的平均回收率为99.2%。灰黄霉素的检出限和定量限分别为1 ng/mL和10 ng/mL。该方法成功地用于定量评价灰黄霉素单次口服50 mg/kg后在大鼠体内的药动学。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Development and validation of a HPLC method to determine griseofulvin in rat plasma: application to pharmacokinetic studies.

Development and validation of a HPLC method to determine griseofulvin in rat plasma: application to pharmacokinetic studies.

Development and validation of a HPLC method to determine griseofulvin in rat plasma: application to pharmacokinetic studies.

Development and validation of a HPLC method to determine griseofulvin in rat plasma: application to pharmacokinetic studies.

A simple, specific, sensitive, and rapid high performance liquid chromatography (HPLC) method for the determination of griseofulvin in small volumes of rat plasma was developed and validated using warfarin as an internal standard. Biological sample preparation involved simple extraction with acetonitrile, followed by dilution with aqueous mobile phase buffer (20 mM sodium dihydrogen phosphate, pH 3.5) to eliminate any chromatographic solvent effects. Griseofulvin and warfarin were baseline separated and quantitated on a C(18) reversed phase column (4.6 x 150 mm, 3.5 microm), using a mobile phase composed of a 20 mM aqueous solution of sodium dihydrogen phosphate-acetonitrile (55:45, v/v, pH 3.5) delivered at a flow rate of 1.0 mL/min, and with fluorescence detection (lambda(excitation) = 300 nm, lambda(emission) = 418 nm). The method was proven to be linear over a plasma griseofulvin concentration range of 10 to 2500 ng/mL with a mean correlation coefficient of 0.9996. The intra-day and inter-day accuracy (relative error) were in the range of 0.89% to 9.26% and 0.71% to 7.68%, respectively. The within-day precision (coefficient of variation) was less than 3.0% and the between-day precision was less than 7.5%. The mean recovery of griseofulvin from rat plasma was found to be 99.2%. The limit of detection (LOD) and the limit of quantification (LOQ) of griseofulvin were determined to be 1 ng/mL and 10 ng/mL, respectively. The developed method was successfully applied to quantitatively assess the pharmacokinetics of griseofulvin in rats following a single 50 mg/kg oral dose of the drug.

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