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 >Assay for the determination of low dosage form of formoterol dry syrup by capillary electrophoresis with head-column field-amplified sample stacking.
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Assay for the determination of low dosage form of formoterol dry syrup by capillary electrophoresis with head-column field-amplified sample stacking.

机译:毛细管电泳-头柱场放大样品堆叠法测定低剂量形式福莫特罗干糖浆的含量。

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摘要

The development of a capillary zone electrophoresis method with head-column field-amplified sample stacking injection for the determination of formoterol (FMTR) in a low dosage dry syrup form was described. To obtain the highest sensitivity, the sample solution was prepared by high content of organic solvent with the presence of a small amount of H+ (60-100 microM) and the capillary inlet end was dipped in water before electroinjection. This method was fully validated in terms of repeatability (RSDs for migration time, peak area of FMTR and peak area ratio between FMTR and I.S. at 1 microg/ml of FMTR was 0.76, 1.10 and 0.55% respectively), reproducibility (RSDs from different capillaries, analytes, days and instruments were 1.52%, 1.04%, 1.16% and 1.93% respectively), linearity (y = 0.827x - 0.085, r = 0.9993 (n = 6) over the range of 0.25-2.0 microg/ml), limits of quantitation, ruggedness and robustness. The method was applied to the determination of the drug in commercial dry syrup preparation (recovery was 100.9%, RSD = 1.5%, n = 5) and proved to be fast and reliable for the quantitation analysis of FMTR in the pharmaceutical form.
机译:描述了一种毛细管区带电泳方法的发展,该方法采用头柱场放大的样品堆积进样法测定低剂量干糖浆形式的福莫特罗(FMTR)。为了获得最高的灵敏度,在高含量的有机溶剂中加入少量的H +(60-100 microM)来制备样品溶液,并在电注入之前将毛细管入口端浸入水中。该方法在重复性(迁移时间的RSD,FMTR的峰面积以及FMTR和IS在1 microg / ml的峰面积比上的峰面积比分别为0.76、1.10和0.55%),再现性(来自不同毛细管的RSD)方面得到了充分验证,分析物,天数和仪器分别为1.52%,1.04%,1.16%和1.93%),线性度(y = 0.827x-0.085,r = 0.9993(n = 6)在0.25-2.0 microg / ml的范围内),定量,坚固性和耐用性的限制。该方法用于测定市售干糖浆制剂中的药物(回收率为100.9%,RSD = 1.5%,n = 5),并被证明是快速,可靠的药物形式FMTR定量分析方法。

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