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用于测定原料药粉末和药物制剂中盐酸阿夫唑嗪的经过验证的高效液相色谱法和薄层色谱法稳定性指示方法。

Validated HPLC and HPTLC stability-indicating methods for determination of alfuzosin hydrochloride in bulk powder and pharmaceutical formulations.

作者信息

Salah Fayed Ahmed, Abdel-Aaty Shehata Mostafa, Yehia Hassan Nagiba, El-Weshahy Soheir Ahmed

机构信息

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

出版信息

J Sep Sci. 2006 Dec;29(18):2716-24. doi: 10.1002/jssc.200600220.

Abstract

Two sensitive, selective, and precise stability-indicating, high-performance liquid chromatography and high-performance thin-layer chromatography methods have been developed for the determination of alfuzosin hydrochloride in the presence of its degradation products. Alfuzosin.HCl was subjected to stress alkaline, acidic, oxidative, thermal, and photo-degradation. The drug could be well separated from the degradation products upon applying the two methods. Separation by HPLC was achieved using an Xterra RP18 column and acetonitrile/0.02 M KH2PO4 (pH=3) in a ratio of 20:80 as mobile phase. The flow rate was 1 mL/min. The linearity range was 0.25 to 11 microg/mL with mean percentage recovery of 100.26 +/- 1.54. The HPTLC method used ALUGRAM Nano-SIL silica gel 60 F254 plates; the optimized mobile phase was methanol/ammonia (100:1.2). Quantitatively the spots were scanned densitometrically at 245 nm. A second order polynomial equation was used for the regression. The range was 0.5-7 microg/spot. The mean percentage recovery was 100.13 +/- 1.67. Two main degradation products were obtained in most stress conditions, separated, and identified by FT-IR and NMR spectral analysis, from which the degradation pathway was proposed. The two methods were validated according to the International Conference on Harmonization. In addition, the HPLC method was used to study the kinetics of alkaline and acid degradation of the drug.

摘要

已开发出两种灵敏、选择性强且精确的稳定性指示高效液相色谱法和高效薄层色谱法,用于在其降解产物存在的情况下测定盐酸阿夫唑嗪。对盐酸阿夫唑嗪进行了碱性、酸性、氧化、热和光降解试验。采用这两种方法时,该药物能与降解产物良好分离。高效液相色谱法采用Xterra RP18柱,以乙腈/0.02 M磷酸二氢钾(pH = 3),比例为20:80作为流动相,流速为1 mL/min。线性范围为0.25至11 μg/mL,平均回收率为100.26±1.54。高效薄层色谱法使用ALUGRAM Nano - SIL硅胶60 F254板;优化的流动相为甲醇/氨水(100:1.2)。定量时在245 nm处进行光密度扫描,采用二阶多项式方程进行回归,范围为0.5 - 7 μg/斑点,平均回收率为100.13±1.67。在大多数加速试验条件下得到了两种主要降解产物,经分离后通过傅里叶变换红外光谱和核磁共振光谱分析进行鉴定,并据此提出了降解途径。这两种方法根据国际协调会议进行了验证。此外,采用高效液相色谱法研究了该药物的碱性和酸性降解动力学。

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