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Spectrophotometric determination of fluoxetine hydrochloride in bulk and in pharmaceutical formulations.

机译:分光光度法测定散装和药物制剂中的盐酸氟西汀。

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摘要

Two new rapid, sensitive and economical spectrophotometric methods are described for the determination of fluoxetine hydrochloride in bulk and in pharmaceutical formulations. Both methods are based on the formation of a yellow ion-pair complex due to the action of methyl orange (MO) and thymol blue (TM) on fluoxetine in acidic (pH 4.0) and basic (pH 8.0) medium, respectively. Under optimised conditions they show an absorption maxima at 433 nm (MO) and 410 nm (TB), with molar absorptivities of 2.12 x 10(-4) and 4.207 x 10(-3) l mol(-1) cm(-1) and Sandell's Sensitivities of 1.64 x 10(-2) and 0.082 microg cm(-2) per 0.001 absorbance unit for MO and TB, respectively. The colour is stable for 5 min after extraction. In both cases Beer's Law is obeyed at 1-20 microg mol(-1) with MO and 4-24 microg mol(-1) with TB. The proposal method was successfully extended to pharmaceutical preparations capsules. The results obtained by both the agreement and E.P. (3rd edition) were in good agreement and statistical comparison by Student's t-test and variance ratio F-test showed no significant difference in the three methods.
机译:描述了两种新的快速,灵敏和经济的分光光度法,用于测定散装和药物制剂中的盐酸氟西汀。两种方法均基于黄色离子对络合物的形成,这是由于分别在酸性(pH 4.0)和碱性(pH 8.0)介质中甲基橙(MO)和百里酚蓝(TM)对氟西汀的作用。在优化的条件下,它们在433 nm(MO)和410 nm(TB)处显示最大吸收,摩尔吸光度为2.12 x 10(-4)和4.207 x 10(-3)l mol(-1)cm(-1) )和Sandell的MO和TB灵敏度分别为0.001吸光度单位1.64 x 10(-2)和0.082 microg cm(-2)。提取后颜色稳定5分钟。在这两种情况下,MO的比尔定律均为1-20 microg mol(-1),TB的摩尔比为4-24 microg mol(-1)。该提议方法已成功地扩展到药物制剂胶囊。通过协议和E.P.获得的结果(第3版)吻合良好,Student's t检验和方差比F检验的统计比较表明这三种方法没有显着差异。

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