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Sample Treatment Approaches for Trace Level Determination of Cesium in Hepatitis B Vaccine by Suppressed Ion Chromatography

机译:抑制离子色谱法测定乙型肝炎疫苗中痕量铯的样品处理方法

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The hepatitis B surface antigen manufactured by recombinant DNA technology is extracted from the culture media by density gradient centrifugation using cesium salts. Cesium is considered to be toxic, because it affects active ion transport by blocking potassium channels. The residual trace levels of cesium in hepatitis B vaccine samples are determined by suppressed ion chromatography. Hepatitis B vaccines contain various buffer salts, aluminum-containing adjuvants, proteins and traces of iron. The polyvalent cations (Al3+, Fe3+) and proteins degrade the chromatographic performance in terms of decreased retention time and poor reproducibility. Different sample preparation approaches were evaluated with the aim of eliminating these foulants: (1) filtration, (2) digestion and (3) digestion-protein precipitation. Quantitative elimination of these foulants was achieved in the digestion-protein precipitation sample clean-up approach. Cesium was separated on the IonPac CS17 column with suppressed conductivity detection. The results of the ion chromatography (IC) method were compared with ICP-MS analysis. The precision of determination was better than 6.5% (relative standard deviation) with a method detection limit of 45 ng mL−1. The expanded uncertainty in the measurement at 95% confidence level (coverage factor 2) is better than 16.3%.
机译:通过重组铯技术通过使用铯盐的密度梯度离心从培养基中提取乙型肝炎表面抗原。铯被认为是有毒的,因为它会通过阻断钾离子通道而影响活性离子的转运。通过抑制离子色谱法测定乙肝疫苗样品中铯的残留痕量水平。乙型肝炎疫苗包含各种缓冲盐,含铝佐剂,蛋白质和微量铁。多价阳离子(Al 3 + ,Fe 3 + )和蛋白质会降低保留时间并降低重现性,从而降低色谱性能。为了消除这些污垢,对不同的样品制备方法进行了评估:(1)过滤,(2)消化和(3)消化蛋白质沉淀。通过消解蛋白质沉淀样品的净化方法可实现对这些污垢的定量消除。在IonPac CS17色谱柱上分离铯,抑制电导检测。将离子色谱(IC)方法的结果与ICP-MS分析进行了比较。测定的准确度优于6.5%(相对标准偏差),方法检测限为45 ng mL -1 。在置信度为95%(覆盖系数2)时,测量的不确定性扩大到16.3%。

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