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Analysis of rosuvastatin stress degradation behavior using liquid chromatography coupled to ultraviolet detection and electrospray ionization mass spectrometry

机译:液相色谱-紫外检测-电喷雾电离质谱联用分析瑞舒伐他汀的应力降解行为

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A validated sensitive stability-indicating LC-UV-ESI-MS method was established to analyze rosuvastatin calcium (ROS) and its potential degradation products (DPs). ROS was subjected to different stress conditions recommended by ICH guidelines including photolytic, oxidative, thermal, acidic and basic hydrolysis. Successful separation of the drug from its DPs was achieved on a Zorbax Eclipse Plus C18 column (4.6 ×100 mm, 3.5 urn) using acetonitrile : 0.1% formic acid in water (40 : 60, v/v) as the mobile phase. The flow rate was 0.5 mL min~(-1) and the sample was detected simultaneously using a UV detector at 242 nm and an ESI-MS detector. ROS was found to be sensitive to photolysis and acidic hydrolysis and slightly affected by oxidation and heat. The proposed chemical structures of the DPs were characterized by studying their fragmentation patterns using ion trap-MS. DPs having different molecular masses including 481,497, 479,463 and 513 were produced under different stress conditions. A major DP released upon oxidation was proposed to be rosuvastatin-N-oxide. The ESI-MS response factors of potential DPs were concluded by a simple statistical procedure. Validation parameters including linearity, accuracy, precision, robustness, and specificity were evaluated. The limit of detection (LOD) and limit of quantification (LOQ) were 15 and 50 pg μL~(-1) for MS detection and were 1 and 2.5 ng μL~(-1) for UV detection, respectively. The relative standard deviation values of intraday and interday precision were not more than 1.92% and 1.81%, respectively. The proposed method was successfully applied on ROS tablets concerning drug assay and purity testing.
机译:建立了经过验证的灵敏稳定性指示性LC-UV-ESI-MS方法,用于分析瑞舒伐他汀钙(ROS)及其潜在降解产物(DPs)。 ROS受到ICH指南推荐的不同应力条件,包括光解,氧化,热,酸性和碱性水解。在Zorbax Eclipse Plus C18色谱柱(4.6×100 mm,3.5 urn)上,使用乙腈:0.1%甲酸的水溶液(40:60,v / v)作为流动相,成功地将药物从其DPs中分离出来。流速为0.5 mL min〜(-1),同时使用242 nm的紫外检测器和ESI-MS检测器同时检测样品。发现ROS对光解和酸性水解敏感,并且受氧化和热的影响很小。拟议的DPs的化学结构通过使用离子阱-MS研究它们的碎片模式进行表征。在不同的应力条件下生产了具有不同分子质量(包括481,497、479,463和513)的DP。氧化时释放的主要DP被认为是瑞舒伐他汀-N-氧化物。潜在DP的ESI-MS响应因子通过简单的统计程序得出结论。评估参数包括线性,准确性,精密度,鲁棒性和特异性。 MS检测的检出限(LOD)和定量限(LOQ)分别为15和50 pgμL〜(-1),UV检测的分别为1和2.5 ngμL〜(-1)。日内和日间精度的相对标准偏差值分别不大于1.92%和1.81%。该方法已成功应用于药物分析和纯度测试的ROS片剂。

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