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动力学分光光度法测定药物制剂中盐酸曲马多的含量

Kinetic spectrophotometric determination of tramadol hydrochloride in pharmaceutical formulation.

作者信息

Abdellatef Hisham E

机构信息

Analytical Chemistry Department, Faculty of Pharmacy, Zagazig University, Zagazig, Egypt.

出版信息

J Pharm Biomed Anal. 2002 Jul 31;29(5):835-42. doi: 10.1016/s0731-7085(02)00206-6.

Abstract

Two simple and sensitive kinetic methods for the determination of tramadol hydrochloride are described. The first method is based upon a kinetic investigation of the oxidation reaction of the drug with alkaline potassium permanganate at room temperature for a fixed time at 20 min. The absorbance of the colored manganate ions was measured at 610 nm. The second method is based on the reaction of tramadol hydrochloride with 4-chloro-7-nitrobenzofurazan (NBD-Cl) in presence of 0.1 M sodium bicarbonate. The spectrophotometric measurements were recorded by measuring the absorbance at 467 nm, at fixed time at 25 min on thermostated water bath at 90+/-1 degrees C. All variables affecting the development of the colour have been investigated and the conditions were optimised. The absorbance concentration plots in both methods were rectilinear over the range 5-25 and 50-250 microg ml(-1), for the first and second methods, respectively. The two methods have been applied successfully to commercial capsule and ampoule dosage form. The results obtained are compared statistically with those given by the reference spectrophotometric method. The determination of tramadol hydrochloride by the fixed concentration and rate constant methods is feasible with the calibration equations obtained, but the fixed time method proves to be more applicable.

摘要

描述了两种用于测定盐酸曲马多的简单且灵敏的动力学方法。第一种方法基于在室温下药物与碱性高锰酸钾的氧化反应进行固定时间(20分钟)的动力学研究。在610nm处测量有色锰酸根离子的吸光度。第二种方法基于盐酸曲马多与4-氯-7-硝基苯并呋喃(NBD-Cl)在0.1M碳酸氢钠存在下的反应。通过在90±1℃的恒温水浴上固定时间(25分钟)测量467nm处的吸光度来记录分光光度测量结果。研究了所有影响颜色形成的变量并优化了条件。对于第一种和第二种方法,吸光度-浓度曲线在5 - 25和50 - 250μg ml⁻¹范围内分别呈线性。这两种方法已成功应用于市售胶囊和安瓿剂型。将获得的结果与参考分光光度法给出的结果进行统计学比较。用所获得的校准方程通过固定浓度和速率常数法测定盐酸曲马多是可行的,但固定时间法被证明更适用。

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