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首页> 外文期刊>Journal of chromatography, A: Including electrophoresis and other separation methods >OPTIMIZATION OF PREPARATIVE ION-EXCHANGE CHROMATOGRAPHY OF PROTEINS - LINEAR GRADIENT SEPARATIONS
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OPTIMIZATION OF PREPARATIVE ION-EXCHANGE CHROMATOGRAPHY OF PROTEINS - LINEAR GRADIENT SEPARATIONS

机译:蛋白质制备离子交换色谱的优化-线性梯度分离

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摘要

In this study, the Steric Mass Action (SMA) model of ion exchange is employed in concert with appropriate mass balance equations to predict the separation performance of preparative ion-exchange chromatography. The model is able to accurately predict linear gradient separations of the proteins alpha-chymotrypsinogen A, cytochrome c, and lysozyme under overloaded conditions. The optimization behavior of preparative ion-exchange chromatography is examined under conditions of baseline resolution and induced sample displacement. This work demonstrates that a simple iterative procedure can be employed to establish optimal gradient conditions for preparative ion-exchange chromatography of proteins. The results also indicate that under appropriate conditions, sample displacement can be employed to dramatically improve the production rate with minor losses in product yield or purity. Linear gradient separations with sample displacement are also less sensitive to the adsorption properties of the feed stream than baseline resolved separations, resulting in simplified methods development.
机译:在这项研究中,离子交换的Steric质量作用(SMA)模型与适当的质量平衡方程式配合使用,以预测制备型离子交换色谱的分离性能。该模型能够在过载条件下准确预测蛋白质α-胰凝乳蛋白酶原A,细胞色素c和溶菌酶的线性梯度分离。在基线分辨率和诱导的样品置换条件下检查了制备型离子交换色谱的优化行为。这项工作表明,可以使用简单的迭代过程为蛋白质的制备性离子交换色谱建立最佳梯度条件。结果还表明,在适当的条件下,可以采用样品置换来显着提高生产率,同时产品收率或纯度损失较小。与基线分离相比,带有样品位移的线性梯度分离对进料流的吸附特性也不敏感,从而简化了方法的开发。

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