Reddy Y Ramachandra, Nandan Srinivasan R, Bharathi D Vijaya, Nagaraju B, Reddy S Saidu, Ravindranath L K, Rao V Suryanarayan
Department of Chemistry, S.K University, Ananthpur, Andhra Pradesh State, India. rc
J Pharm Biomed Anal. 2009 Oct 15;50(3):397-404. doi: 10.1016/j.jpba.2009.05.025. Epub 2009 May 30.
Anastrozole tablets were subjected to different ICH prescribed stress conditions of thermal, hydrolysis, humidity, photolysis and oxidation stress. The drug was found to be stable for all the stressed conditions except for oxidation. Separation of anastrozole from its potential impurities, degradation products and five anastrozole related compounds as main impurities were achieved on Inertsil ODS-3V, 250 mm x 4.6 mm i.d, 5 microm analytical column using reversed phase high performance liquid chromatography (RP-HPLC). The elution of impurities employed time dependent gradient programmed mobile phase consisting of water as mobile phase-A and acetonitrile as mobile phase-B at column flow rates of 1 ml/min and at 215 nm UV detection. The same method was also extended to LC-MS/MS studies which were carried out to identify the degradation product. The method developed was established to have sufficient intermediate precision as similar separation was achieved on another instrument handled by a different operator. The LOQ for anastrozole related compound-A (RC-A), related compound-B (RC-B), related compound-C (RC-C), related compound-D (RC-D), related compound-E (RC-E) and anastrozole were 0.05, 0.03, 0.03, 0.06, 0.06 and 0.06 microg ml(-1) respectively. The linearity of the proposed method for all the above related compounds was investigated in the range of LOQ to 0.600 microg ml(-1) respectively. The specificity was established through peak purity testing using a photo-diode array detector. Method was validated according to ICH guidelines and statistical analysis of the data proved to be suitable for stability testing at quality control.
对阿那曲唑片进行了国际协调会议(ICH)规定的不同强制条件试验,包括热、水解、湿度、光解和氧化应激试验。结果发现,除氧化试验外,该药物在所有强制条件下均稳定。使用反相高效液相色谱法(RP-HPLC),在Inertsil ODS-3V(250 mm×4.6 mm内径,5μm)分析柱上实现了阿那曲唑与其潜在杂质、降解产物以及作为主要杂质的五种阿那曲唑相关化合物的分离。杂质洗脱采用时间依赖性梯度程序流动相,流动相A为水,流动相B为乙腈,柱流速为1 ml/min,紫外检测波长为215 nm。该方法还扩展到了液相色谱-串联质谱(LC-MS/MS)研究,以鉴定降解产物。所开发的方法具有足够的中间精密度,因为由不同操作人员操作的另一台仪器也实现了类似的分离。阿那曲唑相关化合物A(RC-A)、相关化合物B(RC-B)、相关化合物C(RC-C)、相关化合物D(RC-D)、相关化合物E(RC-E)和阿那曲唑的定量限(LOQ)分别为0.05、0.03、0.03、0.06、0.06和0.06μg ml⁻¹。分别在LOQ至0.600μg ml⁻¹范围内研究了上述所有相关化合物的拟议方法的线性。通过使用光电二极管阵列检测器进行峰纯度测试确定了专属性。该方法根据ICH指南进行了验证,数据的统计分析证明适用于质量控制中的稳定性测试。