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用于质粒分离的超多孔琼脂糖阴离子交换剂。

Superporous agarose anion exchangers for plasmid isolation.

作者信息

Tiainen Peter, Gustavsson Per-Erik, Ljunglöf Anders, Larsson Per-Olof

机构信息

Department of Pure and Applied Biochemistry, Center for Chemistry and Chemical Engineering, Lund University, P.O. Box 124, SE-221 00 Lund, Sweden.

出版信息

J Chromatogr A. 2007 Jan 5;1138(1-2):84-94. doi: 10.1016/j.chroma.2006.10.029. Epub 2006 Oct 27.

Abstract

Superporous agarose beads have wide, connecting flow pores allowing large molecules such as plasmids to be transported into the interior of the beads by convective flow. The pore walls provide additional surface for plasmid binding thus increasing the binding capacity of the adsorbent. Novel superporous agarose anion exchangers have been prepared, differing with respect to bead diameter, superpore diameter and type of anion-exchange functional group (poly(ethyleneimine) and quaternary amine). The plasmid binding capacities were obtained from breakthrough curves and compared with the binding capacity of homogeneous agarose beads of the same particle size. Significantly, the smaller diameter superporous agarose beads were found to have four to five times higher plasmid binding capacity than the corresponding homogeneous agarose beads. The experimentally determined plasmid binding capacity was compared with the theoretically calculated surface area for each adsorbent and fair agreement was found. Confocal microscopy studies of beads with adsorbed, fluorescently labelled plasmids aided in the interpretation of the results. Superporous poly(ethyleneimine)-substituted beads with a high ion capacity (230 micromol/ml) showed a plasmid binding of 3-4 mg/ml adsorbent. Superporous quaternary amine-substituted beads had a lower ion capacity (81 micromol/ml) and showed a correspondingly lower plasmid binding capacity (1-2 mg/ml adsorbent). In spite of the lower capacity, the beads with quaternary amine ligand were preferred, due to their much better plasmid recovery (70-100% recovery). Interestingly, both capacity and recovery was improved when the plasmid adsorption step was carried out in the presence of a moderate salt concentration. The most suitable superporous bead type (45-75 microm diameter beads; 4 microm superpores; quaternary amine ligand) was chosen for the capture of plasmid DNA from a clarified alkaline lysate. Two strategies were evaluated, one with and one without enzymatic digestion of RNA. The strategy without RNase gave high plasmid recovery, quantitative removal of protein and a 70% reduction in RNA.

摘要

超大孔琼脂糖珠具有宽阔的连通流动孔,允许诸如质粒等大分子通过对流进入珠子内部。孔壁为质粒结合提供了额外的表面,从而提高了吸附剂的结合能力。已制备出新型超大孔琼脂糖阴离子交换剂,它们在珠子直径、超大孔直径和阴离子交换官能团类型(聚乙烯亚胺和季胺)方面存在差异。通过穿透曲线获得质粒结合能力,并与相同粒径的均相琼脂糖珠的结合能力进行比较。值得注意的是,发现直径较小的超大孔琼脂糖珠的质粒结合能力比相应的均相琼脂糖珠高四到五倍。将实验测定的质粒结合能力与每种吸附剂的理论计算表面积进行比较,发现两者吻合良好。对吸附有荧光标记质粒的珠子进行共聚焦显微镜研究有助于解释结果。具有高离子容量(230微摩尔/毫升)的超大孔聚乙烯亚胺取代珠显示出3-4毫克/毫升吸附剂的质粒结合量。超大孔季胺取代珠的离子容量较低(81微摩尔/毫升),相应地显示出较低的质粒结合能力(1-2毫克/毫升吸附剂)。尽管容量较低,但具有季胺配体的珠子因其更好的质粒回收率(70-100%回收率)而更受青睐。有趣的是,当在中等盐浓度下进行质粒吸附步骤时,容量和回收率都得到了提高。选择最合适的超大孔珠类型(直径45-75微米的珠子;4微米的超大孔;季胺配体)从澄清的碱性裂解物中捕获质粒DNA。评估了两种策略,一种有RNA酶消化,一种没有。没有RNase的策略具有高质粒回收率、蛋白质定量去除和RNA减少70%的效果。

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