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首页> 外文期刊>Journal of chromatography, B. Analytical technologies in the biomedical and life sciences >Potential application of hydrogel-based strong anion-exchange membrane for plasmid DNA purification
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Potential application of hydrogel-based strong anion-exchange membrane for plasmid DNA purification

机译:基于水凝胶的强阴离子交换膜在质粒DNA纯化中的潜在应用

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The potential application of a hydrogel-based strong anion-exchange (Q) membrane to purify plasmid DNAs was evaluated. The maximum binding capacity of plasmid DNA was estimated to be 12.4. mg/ml of membrane volume with a plasmid recovery yield of ~90%. The effect of the inherent properties of plasmid DNA, membrane adsorbent, and the ionic environment on membrane performance was systematically investigated. Plasmid DNAs with smaller tertiary structure tended to have a better recovery than those with larger tertiary structure. Environmental Scanning Electron Microscopy (ESEM) revealed that the hydrogel structure is more porous on one side of membrane than the other. Membrane pre-treatment significantly improved pore distribution and increased membrane porosity resulting in a better adsorption, recovery, and higher flux. The selection of proper operating pH led to further improvement. The relative contribution of these factors to improve membrane chromatography of plasmid DNAs was analyzed using statistical modeling. It was found that the adsorption of plasmid DNA was mainly affected by the available adsorptive area associated with membrane porosity, whereas the recovery of plasmid DNAs was mainly affected by the environmental pH.
机译:评估了基于水凝胶的强阴离子交换(Q)膜纯化质粒DNA的潜在应用。质粒DNA的最大结合能力估计为12.4。毫克/毫升的膜体积,质粒回收率约90%。系统研究了质粒DNA,膜吸附剂和离子环境的固有性质对膜性能的影响。三级结构较小的质粒DNA与三级结构较大的质粒相比,往往具有更好的回收率。环境扫描电子显微镜(ESEM)显示,水凝胶结构在膜的一侧比另一侧更多孔。膜预处理可显着改善孔分布并增加膜孔隙率,从而实现更好的吸附,回收率和更高的通量。选择合适的工作pH值可以进一步改善。使用统计模型分析了这些因素对改善质粒DNA膜层析的相对贡献。发现质粒DNA的吸附主要受与膜孔隙相关的可用吸附面积的影响,而质粒DNA的回收率主要受环境pH的影响。

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