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通过测定某些抗组胺药盐酸盐中的氯化物,对其进行滴定法和分光光度法测定。

Titrimetric and spectrophotometric assay of some antihistamines through the determination of the chloride of their hydrochlorides.

作者信息

Basavaiah K, Charan V S

机构信息

Department of Studies in Chemistry, University of Mysore, Karnataka, India.

出版信息

Farmaco. 2002 Jan;57(1):9-17. doi: 10.1016/s0014-827x(01)01151-x.

Abstract

Two simple, rapid and reliable methods for the determination of four antihistamines based on the measurement of the chloride of their hydrochlorides are described. In the titrimetric method, the chloride content of each drug is determined by titrating with mercury(II) nitrate using diphenylcarbazone-bromothymol blue as indicator. In the spectrophotometric method, to a fixed concentration of mercury(II)-diphenylcarbazone complex different amounts of drug are added and the decrease in absorbance of mercury(II)-diphenylcarbazone complex, consequent to the replacement of diphenylcarbazone of the complex by the chloride of the drug, was measured at 540 nm. The stoichiometry of the reaction that forms the basis for titrimetry is assessed. Different variables affecting the color formation in spectrophotometry were studied and optimized. At the wavelength of maximum absorption, Beer's law is obeyed in the 0-100 microg ml(-1) range. The molar absorptivity and Sandell sensitivity are calculated. The proposed methods were applied for the analysis of pharmaceutical formulations containing these drugs. Statistical treatment of the experimental results indicates that the procedures are precise and accurate. Excipients used as additives in pharmaceutical formulations did not interfere in the proposed procedures as shown by the recovery studies.

摘要

描述了两种基于测定四种抗组胺药盐酸盐中氯离子来测定这四种抗组胺药的简单、快速且可靠的方法。在滴定法中,以二苯卡巴腙 - 溴百里酚蓝为指示剂,用硝酸汞(II)滴定来测定每种药物的氯含量。在分光光度法中,向固定浓度的汞(II) - 二苯卡巴腙络合物中加入不同量的药物,并在540nm处测量由于药物的氯离子取代络合物中的二苯卡巴腙而导致的汞(II) - 二苯卡巴腙络合物吸光度的降低。评估了构成滴定法基础的反应的化学计量关系。研究并优化了影响分光光度法中颜色形成的不同变量。在最大吸收波长处,在0 - 100μg ml⁻¹范围内符合比尔定律。计算了摩尔吸光系数和桑德尔灵敏度。所提出的方法应用于含有这些药物的药物制剂分析。实验结果的统计处理表明这些方法精确且准确。回收率研究表明,用作药物制剂添加剂的辅料在所提出的方法中不产生干扰。

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