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首页> 外文期刊>Chemical and Pharmaceutical Bulletin >A comparative study on various spectrometries with thin layer chromatography for simultaneous analysis of drotaverine and nifuroxazide in capsules.
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A comparative study on various spectrometries with thin layer chromatography for simultaneous analysis of drotaverine and nifuroxazide in capsules.

机译:薄层色谱法同时分析胶囊中的Drotaverine和Nifuroxazide的各种光谱的比较研究。

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Three spectrophotometric methods including Vierordt's method, derivative, ratio spectra derivative, and thin layer chromatography (TLC)-UV densitometric method were developed for simultaneous determination of drotaverine HCl (DRT) and nifuroxazide (NIF) in presence of its impurity, 4-hydroxybenzohydrazide (4-HBH). In Vierordt's method, (E(1 cm)(1%)) values were calculated at 227 and 368 nm in the zero-order spectra of DRT and NIF. By derivative spectrophotometry, the zero-crossing method, drotaverine HCl was determined using the second derivative at 245 nm and the third derivative at 238 nm, while nifuroxazide was determined using the first derivative at 399 nm and the second derivative at 411 nm. The ratio spectra derivative spectrophotometry is basedon the measure of the amplitude at 459 nm for DRT and at 416 nm for NIF in the first derivative of the ratio spectra. Calibration graphs of the three spectrophotometric methods were plotted in the range 1-10 mug/ml of DRT and 2-20 mug/ml of NIF. TLC-UV densitometric method was achieved on silica gel plates using ethyl acetate : methanol : ammonia 33% (10 : 1 : 0.1 v/v/v) as the mobile phase. The Rf values were 0.74, 0.50, 0.30+/-0.01 for DRT, NIF and 4-HBH, respectively. On the fluorescent plates, the spots were located by fluorescence quenching and the densitometrical area were measured at 308 and 287 nm with linear range 0.2-4 mug/spot and 0.6-12 mug/spot for DRT and NIF, respectively. The proposed methods have been successfully applied to the commercial pharmaceutical formulation without any interference of excipients. Mean recoveries, relative standard deviations and the results of the proposed methods were compared with those obtained by applying the alternate methods.
机译:开发了三种分光光度法,包括Vierordt法,导数法,比值光谱导数法和薄层色谱法(TLC)-UV光密度法,用于在存在杂质,4-羟基苯并肼( 4-HBH)。在Vierordt方法中,在DRT和NIF的零级光谱中,在227和368 nm处计算了(E(1 cm)(1%))值。通过导数分光光度法,过零法使用245 nm处的二阶导数和238 nm处的三阶导数测定盐酸屈花碱,而使用399 nm处的一阶导数和411 nm处的二阶导数测定尼呋沙肼。比率光谱导数分光光度法基于比率光谱的一阶导数中DRT在459 nm和NIF在416 nm处的幅度测量值。三种分光光度法的校准图分别在DRT 1-10杯/毫升和NIF 2-20杯/毫升的范围内绘制。在硅胶板上使用乙酸乙酯:甲醇:氨33%(10:1:0.1 v / v / v)作为流动相,获得TLC-UV密度法。 DRT,NIF和4-HBH的Rf值分别为0.74、0.50、0.30 +/- 0.01。在荧光板上,通过荧光猝灭法定位斑点,并在308和287 nm处分别测量DRT和NIF的线性范围0.2-4杯/点和0.6-12杯/点的光密度。所提出的方法已经成功地应用于商业药物制剂,而没有任何赋形剂的干扰。将平均回收率,相对标准偏差和拟议方法的结果与采用其他方法获得的结果进行了比较。

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