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Sorption processes in ion-exchange chromatography of viruses

机译:病毒离子交换色谱中的吸附过程

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摘要

Purified viruses are used in gene therapy and vaccine production. Ion-exchange chromatography (IEC) is the most common method for large-scale downstream purification of viruses and proteins. Published IEC protocols provide details for specific separations but not general methods for selecting operating parameters. To make the selection more systematic, we study adenovirus type 5 (Ad5) as a model virus and develop batch uptake and light scattering methods for optimizing the ionic strength and pH of adsorption, as well as providing heuristics for resin geometry. The static capacity for Ad5 was found to go through a maximum with increasing ionic strength. Comparison to a protein-resin system shows that resin capacity for the virus is at least an order of magnitude lower, even on a wide-pore resin. Virus penetration into the wide-pore resin is only partial and the uptake rate is an order of magnitude slower than the uptake onto a narrow-pore resin. (c) 2007 Elsevier B.V. All rights reserved.
机译:纯化的病毒用于基因治疗和疫苗生产。离子交换色谱(IEC)是病毒和蛋白质大规模下游纯化的最常用方法。已发布的IEC协议提供了特定间隔的详细信息,但没有提供选择运行参数的通用方法。为了使选择更加系统化,我们将5型腺病毒(Ad5)作为模型病毒进行研究,并开发了分批摄取和光散射方法,以优化离子强度和吸附pH值,并为树脂几何结构提供启发。发现Ad5的静态容量随着离子强度的增加而达到最大值。与蛋白质树脂系统的比较表明,即使在宽孔树脂上,该病毒的树脂容量也至少降低了一个数量级。病毒仅部分渗透到宽孔树脂中,吸收速率比窄孔树脂吸收慢一个数量级。 (c)2007 Elsevier B.V.保留所有权利。

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