首页> 外文期刊>Journal of Pharmaceutical and Biomedical Analysis: An International Journal on All Drug-Related Topics in Pharmaceutical, Biomedical and Clinical Analysis >Comparison of ultraviolet detection, evaporative light scattering detection and charged aerosol detection methods for liquid-chromatographic determination of anti-diabetic drugs.
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Comparison of ultraviolet detection, evaporative light scattering detection and charged aerosol detection methods for liquid-chromatographic determination of anti-diabetic drugs.

机译:液相色谱法测定抗糖尿病药物的紫外检测,蒸发光散射检测和带电气溶胶检测方法的比较。

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摘要

Recently, charged aerosol detection (CAD), a new kind of universal detection method, has been widely employed in the HPLC system. In the present study, four kinds of anti-diabetic drug standards, glipizide, gliclazide, glibenclamide and glimepiride were determined by ultraviolet (UV) detection, evaporative light scattering detection (ELSD) and the aforementioned CAD. The results were compared with reference to linearity, accuracy, precision and limit of detection (LOD). All of the experiments were performed on a reverse phase column with water and acetonitrile as the mobile phase. Separations were achieved under the same chromatographic conditions for each detection method. As a result, CAD generated nearly uniform responses compared with UV detection and ELSD. It showed the best accuracy and LOD among 3 detectors and had similar precision with UV detection at higher concentrations while UV detection showed a better precision at lower concentrations than did CAD or ELSD. The LOD of CAD, in fact, can be up to two times higher than that of ELSD. The UV and ELSD linearity was satisfactory at R(2)>0.99, though in the case of CAD, a log-log transformation was needed. The proposed methods were also applied to the real anti-diabetic drugs and diabetes-related dietary supplements.
机译:近来,一种新型的通用检测方法,带电气溶胶检测(CAD)已被广泛应用于HPLC系统中。在本研究中,通过紫外线(UV)检测,蒸发光散射检测(ELSD)和上述CAD方法确定了格列吡嗪,格列齐特,格列本脲和格列美脲四种抗糖尿病药物标准。将结果与线性,准确性,精确度和检测限(LOD)进行了比较。所有实验均在反相柱上进行,其中水和乙腈为流动相。每种检测方法在相同色谱条件下进行分离。结果,与紫外线检测和ELSD相比,CAD产生了几乎统一的响应。它在3个检测器中显示出最佳的精度和LOD,并且在较高浓度下与UV检测具有相似的精度,而在较低浓度下,UV检测显示出比CAD或ELSD更好的精度。实际上,CAD的LOD可以高达ELSD的LOD的两倍。 UV和ELSD线性在R(2)> 0.99时令人满意,尽管在CAD情况下​​,仍需要对数-对数变换。所提出的方法也被应用于真正的抗糖尿病药物和与糖尿病有关的膳食补充剂。

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