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Analysis and simulation of frontal affinity chromatography of proteins

机译:蛋白质正面亲和层析的分析与模拟

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A transport model that considers pore diffusion,external film resistance,finite kinetic rate and column dispersed flow,was used to mathematically describe a frontal affinity chromatography system.The corresponding differential equations system was solved in a simple and accurate form by using the numerical method of lines (MOL).The solution was compared with experimental data from literature and the analytic Thomas solution.The frontal affinity chromatography of lysozyme to Cibacron Blue Sepharose CL-6B was used as a model system.A good fit to the experimental data was made with the simulated runs of the transport model using the MOL solution.This approach was used to perform a parametric analysis of the experimental frontal affinity system.The influence of process and physical parameters on the frontal affinity chromatography process was investigated.The MOL solution of the transport model results in an unique and simple way to predict frontal affinity performance as well a better understanding of the fundamental mechanisms responsible for the separation.
机译:考虑孔隙扩散,外部膜阻力,有限动力学速率和色谱柱分散流的输运模型被用来数学描述一个正面亲和色谱系统。通过使用数值方法以一种简单而精确的形式求解了相应的微分方程组。将该溶液与文献资料和Thomas解析溶液的实验数据进行比较,使用溶菌酶与Cibacron Blue Sepharose CL-6B的正面亲和色谱作为模型系统,并与实验数据拟合良好使用MOL解决方案模拟运输模型的运行。该方法用于对实验性额叶亲和系统进行参数分析。研究了工艺和物理参数对额叶亲和层析过程的影响。模型以独特而简单的方式预测额叶亲和力表现,并提供更好的了解负责分离的基本机制。

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