PDA反相液相色谱法同时测定非生物和生物基质中的右美沙芬和氯苯那敏

H. Shafi, N. Din, Muhammad Imran, M. Sarwar, M. Tahir, S. Khursheed
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引用次数: 6

摘要

建立了一种简便、精确、灵敏的光电二极管阵列反相高效液相色谱法同时测定各种基质中右美沙芬(DXM)和氯苯那敏(CLP)的方法,并进行了验证。色谱柱为C-18 (15 cm × 4.6 mm × 5 μm),流动相为甲醇/ pH 3.0磷酸二氢钾缓冲液(60:40,v/v),流速为0.8 mL/min,流速为230 nm,等密度洗脱,分离时间为8 min。采用外标法定量。本方法对CLP(保留时间3.83±0.10 min)的线性范围为1 ~ 200 μg/mL, r2为0.9994;对DXM(保留时间5.02±0.10 min)的线性范围为2 ~ 1000 μg/mL, r2为0.9993。CLP的检测限和定量限分别为0.25、1.0 μg/mL和0.50、1.5 μg/mL。样品在高效液相色谱进样器中保持稳定12 h,无基质干扰。该方法准确,采用简单的液/液萃取工艺,两种分析物的回收率为90.0% ~ 101.9%。日内和日内精度均小于2.5%。结果表明,该方法稳健性好,重复性好,适用于药物(活性原料、糖浆)和生物(血液)基质。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Validated Reversed-Phase Liquid Chromatographic Method for Simultaneous Determination of Dextromethorphan and Chlorpheniramine in Non-biological and Biological Matrices Using PDA Detector
A simple, precise and sensitive reversed-phase HPLC method using Photo-diode array detector for simultaneous determination of dextromethorphan (DXM) and chlorpheniramine (CLP) in various matrices had been developed and validated. The separation was achieved within 8 minutes on a C-18 column (15 cm x 4.6 mm x 5 μm) using methanol/ pH 3.0 potassium dihydrogen phosphate buffer (60:40, v/v) mobile phase in an isocratic elution mode with flow rate 0.8 mL/min and UV-detection at 230 nm. External standard was employed for quantification. The current method demonstrated good linearity ranged 1-200 μg/mL for CLP (retention time 3.83 ± 0.10 min) with r2 of 0.9994 and 2-1000 μg/mL for DXM (retention time 5.02 ± 0.10 min) with R2 of 0.9993. The limits of detection and quantification were 0.25 μg/mL and 1.0 μg/mL for CLP and 0.50 μg/mL and 1.5 μg/mL for DXM. No interference from matrices was observed and samples remained stable in the HPLC injector for 12 h. The developed method was accurate that employed a simple liquid/liquid extraction procedure with recovery ranged 90.0%-101.9% for both analytes. Intra and inter-day precision were less than 2.5%. The method was proved robust and reproducible that is applicable to pharmaceutical (active raw materials, syrups) and biological (blood) matrices.
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