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首页> 外文期刊>Journal of chromatography, B. Analytical technologies in the biomedical and life sciences >Effects of process parameters on the efficiency of chromatographic separations using a cuboid packed-bed device
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Effects of process parameters on the efficiency of chromatographic separations using a cuboid packed-bed device

机译:工艺参数对使用长方体包装床装置的色谱分离效率的影响

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In recent papers we have proposed cuboid packed-bed devices as viable alternatives to preparative columns with low bed-height to diameter ratios that are typically used for biopharmaceutical purification processes. In this case study, we systematically examined operating parameters such as mobile phase flow rate, sample injection volume and feed protein concentration on the characteristics of flow-through and bound-and-eluted protein peaks. The current study was carried out using strong anion exchange media packed in a cuboid packed-bed device and its equivalent column, i.e. with identical volume and bed-height. Our experimental results showed that the cuboid packed-bed device outperformed its equivalent column at all conditions examined. However, the improvement in performance in flow-through experiments was more significant at lower flow rates, and when smaller sample volumes (i.e. less than 20% of bed volume) were injected. Also, the performance of the cuboid packed-bed was significantly better when a concentrated protein sample was injected using a small volume loop. In bind-and-elute experiments, the flow rate had a very significant impact on the performance of the cuboid packed-bed device, with better results being obtained at the lower flow rates examined. By choosing appropriate experimental conditions, significantly sharper peaks and thereby efficient separations could be achieved using the cuboid packed-bed device than with its equivalent column.
机译:在最近的论文中,我们已经提出了长方体包装床装置作为制备型柱的可行替代品,其具有低床高度至直径比通常用于生物制药净化过程的直径比。在这种情况下,我们系统地检查了流动相流速,样品注射体积和饲料蛋白质浓度的操作参数,对流通和结合和洗脱的蛋白质峰的特性。目前使用在长方体包装床装置中包装的强阴离子交换介质及其等同柱进行,即具有相同的体积和床高。我们的实验结果表明,在检查的所有条件下,立方体包装床装置在其等同柱上表现优于其等同柱。然而,在较低的流速下,流通实验中性能的改善更显着,并且喷射较小的样品体积(即小于20%的床体积)。此外,当使用小体积回路注射浓缩蛋白质样品时,长方体包装床的性能明显更好。在结合和洗脱实验中,流速对长方体填充床装置的性能产生了非常显着的影响,并且在检查的较低流速下获得了更好的结果。通过选择适当的实验条件,可以使用长方体填充床装置与其等效柱一起实现高峰值,从而可以实现有效的分离。

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