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STABILITY INDICATING UPLC METHOD FOR THE RAPID SEPARATION OF RELATED COMPONENTS OF GEMCITIBINE HYDROCHLORIDE

机译:稳定性指示UPLC方法,用于快速分离盐酸吉他锡相关组分的方法

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摘要

With the objective of developing an advanced method for rapid separations with shorter runtime, a simple, precise, accurate stability-indicating isocratic reverse phase ultra-performance liquid chromatographic (RP-UPLC) method coupled with a photodiode array detector was developed for the quantitative determination of Gemcitibine hydrochloride and its three impurities (GEM) in drug substance. The determination was completed for an active pharmaceutical ingredient in the presence of degradation products and its process-related impurities. The method was optimized by using the samples generated from forced degradation studies. Good resolution between the peaks for impurities formed during synthesis, degradation products, and the analyte was achieved on a Waters Acquity UPLC HSS T3 (2.1 x 100 mm, 1.8 mu m) column using mobile phase containing a mixture of buffer and methanol in the ratio of 90:10. The eluted compounds were monitored at 210 nm. The runtime was only 5.0 min, within which Gemcitabine, its three impurities, and degradation products were well separated. The degradation samples were assayed against the qualified reference standard and the mass balance in each case was more than 99%. The newly developed method was validated as per ICH guidelines with respect to specificity, linearity, limit of detection, limit of quantification, accuracy, precision, and robustness. Forced degradation studies were also performed to demonstrate the stability indicating power of the developed UPLC method.
机译:通过开发具有较短运行时快速分离的先进方法的目的,开发了一种简单,精确,准确的指示与光电二极管阵列检测器联接的简单,精确,精确的稳定性指示的等型超性能液相色谱(RP-UPLC)方法用于定量测定盐酸吉锡及其三种杂质(宝石)。在降解产物的存在及其与其有关的杂质存在下,在活性药物成分完成该测定。通过使用从强制劣化研究产生的样品进行了优化该方法。在合成,降解产物和分析物期间形成的杂质的峰之间的良好分离器,使用含有含有缓冲液和甲醇的混合物的流动相,在水中的水中的诸如UPLC HSS T3(2.1×100mm,1.8μmm)柱上90:10。洗脱的化合物在210nm处监测。运行时间仅为5.0分钟,其中吉西他滨,其三种杂质和降解产物很好地分开。针对合格的参考标准测定降解样品,每种情况下的质量平衡超过99%。关于特异性,线性度,检测极限,量化限制,准确,精度和鲁棒性限制,新开发的方法被验证。还进行了强制降解研究以证明所发育的UPLC方法的稳定性指示功率。

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