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Development and Validation of a RP-HPLC Method for Determination of Related Substances and Degradants in Entacapone

机译:测定恩他卡朋中有关物质和降解物的RP-HPLC方法的建立和验证

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A new reverse phase-liquid chromatography (RP-HPLC) method has been developed for simultaneous determination of entacapone and its pharmacopoeia impurities, in-house impurities and degradation impurities (total 17 analytes). Chromatographic separation was achieved on a C18 column (size: 250 x 4.6 mm; 5 mu m particle size) at a flow rate of 1.0 mL/min with 210 nm detection. The mobile phase (MP) consists of 1.361 g of potassium di-hydrogen phosphate and 1.742 g of di-potassium phosphate in 1.0 L water, pH adjusted to 2.5 with ortho phosphoric acid (MP-A) and acetonitrile (MP-B) through gradient elution. The product was subjected to stress conditions such as acid, base, peroxide, thermal and photolytic degradation. Two new impurities above 2% level were observed and isolated through preparative HPLC and well characterized. However, no interference observed due to degradation impurities and entacapone and its EP impurities, in-house impurities. As part of the method validation, specificity, limit of detection, limit of quantitation (LOQ), linearity, accuracy, precision, robustness and ruggedness were determined. LOQ values were achieved between 0.01 and 0.04%. Good linearity (r(2) > 0.99) was obtained ranging from LOQ to 150%. Recovery was verified for all impurities at concentrations ranging from LOQ to 150%. Hence, a newly developed RP-HPLC method was capable for well separation of all analytes with acceptable resolution and tailing factor.
机译:已开发出一种新的反相液相色谱法(RP-HPLC),用于同时测定他卡朋及其药典杂质,内部杂质和降解杂质(总共17种分析物)。在C18色谱柱(尺寸:250 x 4.6 mm;粒径为5μm)上,以1.0 mL / min的流速进行色谱分离,检测波长为210 nm。流动相(MP)包含1.361 g磷酸二氢钾和1.742 g磷酸二钾在1.0 L水中的溶液,通过正磷酸(MP-A)和乙腈(MP-B)将pH调节至2.5,梯度洗脱。使产物经受应力条件,例如酸,碱,过氧化物,热和光解降解。观察到了两种新的高于2%含量的杂质,并通过制备型HPLC分离并进行了很好的表征。但是,没有观察到由于降解杂质和五氢萘醌及其内在杂质EP而引起的干扰。作为方法验证的一部分,确定了特异性,检测限,定量限(LOQ),线性,准确性,精密度,鲁棒性和耐用性。 LOQ值在0.01到0.04%之间。获得了良好的线性度(r(2)> 0.99),从LOQ到150%。验证了所有杂质在LOQ至150%范围内的回收率。因此,新开发的RP-HPLC方法能够以可接受的分辨率和拖尾因子很好地分离所有分析物。

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