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Purification of recombinant brain derived neurotrophic factor usingreversed phase displacement chromatography

机译:反相置换色谱法纯化重组脑源性神经营养因子

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This work investigates the utility of RPLC displacement chromatography for the purification of recombinant brain derived neurotrophic factor (rHu-BDNF) from its variants and E. coli. protein (ECP) impurities. The closely associated variants (six in total) differ by one amino acid from the native BDNF and thus pose a challenging separation problem. Several operational parameters were investigated to study their effects on the yield of the displacement process. The results indicated that the concentration of trifluoroacetic acid (TFA) in the buffer was a key factor in achieving the desired purification. Displacement chromatography on an analytical scale column resulted in extremely high purity and yield in a single chromatographic step. The process was successfully scaled-up with respect to particle and column diameter. The production rate of a pilot scale RPLC displacement process was shown to be 23 times higher than the combined production rates of the current preparative ion exchange and hydrophobic interaction gradient elution steps that are used to remove variant and ECP impurities, respectively.
机译:这项工作研究了RPLC置换色谱法从其变体和大肠杆菌中纯化重组脑源性神经营养因子(rHu-BDNF)的实用性。蛋白质(ECP)杂质。紧密相关的变体(总共六个)与天然BDNF相差一个氨基酸,因此提出了一个具有挑战性的分离问题。研究了几个操作参数,以研究它们对置换过程产量的影响。结果表明,缓冲液中三氟乙酸(TFA)的浓度是实现所需纯化的关键因素。在分析级色谱柱上进行置换色谱分析,可在单个色谱步骤中获得极高的纯度和收率。关于颗粒和色谱柱直径,该方法已成功扩大规模。已显示中试规模RPLC置换工艺的生产率比当前用于分别去除变体杂质和ECP杂质的制备性离子交换和疏水相互作用梯度洗脱步骤的综合生产率高23倍。

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