HPLC-MS同时测定血浆中氧氟沙星和头孢克肟的方法:建立与验证。

Mahesh V Attimarad, Ahmed O Alnajjar
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引用次数: 19

摘要

目的:建立以莫西沙星为内标同时测定人血浆中氧氟沙星(OFL)和头孢克肟(CEF)含量的高效液相色谱-质谱(HPLC-MS)方法,并进行验证。方法:采用安捷伦LCMS系统,配备Zorbax eclipse XBD C18色谱柱(150 mm × 4.6 mm,直径5 μm),流动相为乙腈、甲醇和0.5%甲酸的混合物,比例为23:10:67% v/v,流速为0.6 mL/min。血浆样品用乙腈蛋白沉淀法提取,用正离子模式分析。结果:本方法在OFL浓度范围4 ~ 500 ng/mL (r = 0.9996)和CEF浓度范围40 ~ 6000 ng/mL (r = 0.9998)内具有良好的线性关系。OFL和CEF的定量下限分别为4 ng/mL和40 ng/mL,达到两种药物在人血浆中可能存在的水平。此外,根据ICH指南对报告的方法进行了验证,发现其完全在可接受的范围内。结论:该方法简便、快速、准确、精密度高,适用于临床实验室药代动力学和治疗药物监测。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

A conventional HPLC-MS method for the simultaneous determination of ofloxacin and cefixime in plasma: Development and validation.

A conventional HPLC-MS method for the simultaneous determination of ofloxacin and cefixime in plasma: Development and validation.

A conventional HPLC-MS method for the simultaneous determination of ofloxacin and cefixime in plasma: Development and validation.

A conventional HPLC-MS method for the simultaneous determination of ofloxacin and cefixime in plasma: Development and validation.

Objective: A simple, rapid, and sensitive high performance liquid chromatography-mass spectrometry (HPLC-MS) method was developed and validated for the simultaneous determination of ofloxacin (OFL) and cefixime (CEF) in human plasma using the moxifloxacin as internal standard.

Methodology: Analytes were separated using an Agilent LCMS system equipped with a Zorbax eclipse XBD C18 column (150 mm × 4.6 mm i.d., 5 μm) and using a mobile phase consisting of a mixture of acetonitrile, methanol and 0.5% formic acid in a ratio of 23:10:67% v/v and flow rate was set at 0.6 mL/min. Plasma samples were extracted using the protein precipitation with acetonitrile and analyzed by positive ion mode.

Results: The linearity of the proposed method was investigated in the concentration range of 4-500 ng/mL (r = 0.9996) for OFL and 40-6000 ng/mL (r = 0.9998) for CEF. The lower limits of quantification were 4 ng/mL and 40 ng/mL for OFL and CEF respectively, which reach the level of both drugs possibly found in human plasma. Further, the reported method was validated as per the ICH guidelines and found to be well within the acceptable range.

Conclusion: The proposed method is simple, rapid, accurate, precise, and appropriate for pharmacokinetic and therapeutic drug monitoring in the clinical laboratories.

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