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Enhanced purification of plasmid DNA isoforms by exploiting ionic strength effects during ultrafiltration

机译:通过在超滤过程中利用离子强度效应来增强质粒DNA亚型的纯化

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The solution structure of plasmid DNA is known to be a strong function of solution conditions due to intramolecular electrostatic interactions between the charged phosphate groups along the DNA backbone. The objective of this work was to determine whether it was possible to enhance the use of ultrafiltration for separation of different plasmid isoforms by proper selection of the solution ionic strength and ion type. Experiments were performed with a 3.0kbp plasmid using composite regenerated cellulose ultrafiltration membranes. The transmission of the linear isoform was nearly independent of solution ionic strength, but increased significantly with increasing filtrate flux due to the elongation of the highly flexible plasmid in the converging flow field into the membrane pores. In contrast, the transmission of the open-circular and supercoiled plasmids both increased with increasing NaCl or MgCl2 concentration due to the change in plasmid size and conformational flexibility. The effect of ionic strength was greatest for the supercoiled plasmid, providing opportunities for enhanced purification of this therapeutically active isoform. This behavior was confirmed using experiments performed with binary mixtures of the different isoforms. These results clearly demonstrate the potential for enhancing the performance of membrane systems for plasmid DNA separations by proper selection of the ionic conditions. (c) 2015 Wiley Periodicals, Inc.
机译:已知质粒DNA的溶液结构是溶液条件的强函数,这是由于沿着DNA主链的带电磷酸基团之间的分子内静电相互作用。这项工作的目的是确定是否可以通过适当选择溶液的离子强度和离子类型来提高超滤分离不同质粒同工型的可能性。使用复合再生纤维素超滤膜对3.0kbp质粒进行了实验。线性同工型的传递几乎与溶液离子强度无关,但是由于滤液通量的增加而显着增加,这归因于在流向膜孔的会聚流场中高柔性质粒的延长。相反,由于质粒大小和构象柔韧性的改变,开环和超螺旋质粒的传递都随着NaCl或MgCl2浓度的增加而增加。离子强度对超螺旋质粒的影响最大,为增强这种治疗活性同工型的纯化提供了机会。使用不同亚型的二元混合物进行的实验证实了这种行为。这些结果清楚地表明了通过适当选择离子条件来增强用于质粒DNA分离的膜系统性能的潜力。 (c)2015年威利期刊有限公司

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