Tarmann Christina, Jungbauer Alois
Department of Biotechnology, University of Applied Life Science and Natural Resources Vienna, Vienna, Austria.
J Sep Sci. 2008 Aug;31(14):2605-18. doi: 10.1002/jssc.200700654.
Anion exchange chromatography (AEC) is a useful and effective tool for DNA purification, but due to average pore sizes between 40 and 100 nm most AEC resins lack truly useful binding capacities for plasmid DNA (pDNA). Equilibrium binding capacities and uptake kinetics of AEC media including conventional media (Source 30 Q, Q Sepharose HP), a polymer grafted medium (Fractogel EMD DEAE (M)), media with large pores (Celbeads DEAE, PL SAX 4000 A 30 microm) and a monolithic medium (CIM-DEAE) were investigated by batch uptake or shallow bed experiments at two salt concentrations. Theoretical and experimental binding capacities suggest that the shape of the pDNA molecule can be described by a rod with a length to diameter ratio of 20:1 and that the molecule binds in upright position. The arrangement of DNA like a brush at the surface can be considered as entropy driven, kind of self-assembly process which is inherent to highly and uniformly charged DNA molecules. The initial phase of adsorption is very fast and levels off, associated with a change in mass transfer mechanism. Feed concentrations higher than 0.1 mg/mL pDNA pronounce this effect. Monolithic media showed the fastest adsorption rate and highest binding capacity with 13 mg pDNA per mL.
阴离子交换色谱法(AEC)是一种用于DNA纯化的有用且有效的工具,但由于平均孔径在40至100纳米之间,大多数AEC树脂对质粒DNA(pDNA)缺乏真正有用的结合能力。通过在两种盐浓度下进行批量吸附或浅床实验,研究了包括传统介质(Source 30 Q、Q Sepharose HP)、聚合物接枝介质(Fractogel EMD DEAE (M))、大孔介质(Celbeads DEAE、PL SAX 4000 A 30微米)和整体介质(CIM-DEAE)在内的AEC介质的平衡结合能力和摄取动力学。理论和实验结合能力表明,pDNA分子的形状可以用长度与直径比为20:1的棒来描述,并且该分子以直立位置结合。DNA在表面像刷子一样排列可被视为由熵驱动的,一种高度且均匀带电的DNA分子固有的自组装过程。吸附的初始阶段非常快,然后趋于平稳,这与传质机制的变化有关。pDNA进料浓度高于0.1 mg/mL时这种效应更为明显。整体介质显示出最快的吸附速率和最高的结合能力,每毫升可达13 mg pDNA。