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同步荧光光谱法同时测定萘普生和二氟尼柳

Simultaneous determination of naproxen and diflunisal using synchronous luminescence spectrometry.

作者信息

Maher Hadir M

机构信息

Faculty of Pharmacy, Department of Pharmaceutical Analytical Chemistry, University of Alexandria, El-Messalah, Alexandria, 21521, Egypt.

出版信息

J Fluoresc. 2008 Sep;18(5):909-17. doi: 10.1007/s10895-008-0322-5. Epub 2008 Feb 7.

Abstract

Binary mixtures of naproxen and diflunisal can be resolved by using zero-crossing first derivative emission spectrofluorimetry, first derivative constant wavelength synchronous luminescence spectrometry and first derivative constant energy synchronous luminescence spectrometry. These methods do not require any previous separation steps. The lowest quantitation limits for both drugs were obtained with first derivative constant wavelength synchronous luminescence spectrometry (0.002 and 0.015 microg ml(-1) for naproxen and diflunisal, respectively). The measurements were performed in 40% methanolic aqueous medium at pH 8.0 provided by adding 0.02 M phosphate buffer solution. The proposed methods were successfully applied to the simultaneous determination of naproxen and diflunisal in pharmaceuticals and human serum samples with high precision and accuracy. Linearity, accuracy, precision, limits of detection, limits of quantitation, and other aspects of analytical validation are included in the text.

摘要

通过使用零交叉一阶导数发射荧光光谱法、一阶导数恒波长同步荧光光谱法和一阶导数恒能量同步荧光光谱法,可以拆分萘普生和二氟尼柳的二元混合物。这些方法无需任何先前的分离步骤。两种药物的最低定量限通过一阶导数恒波长同步荧光光谱法获得(萘普生和二氟尼柳分别为0.002和0.015μg ml⁻¹)。测量在通过添加0.02 M磷酸盐缓冲溶液提供的pH 8.0的40%甲醇水介质中进行。所提出的方法成功应用于药物制剂和人血清样品中萘普生和二氟尼柳的同时测定,具有高精度和准确性。文中包含了线性、准确性、精密度、检测限、定量限以及分析验证的其他方面。

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