Shinomiya Kazufusa, Yanagidaira Kazuhiro, Ito Yoichiro
College of Pharmacy, Nihon University, 7-7-1 Narashinodai, Funabashi-shi, Chiba 274-8555, Japan.
J Chromatogr A. 2006 Feb 3;1104(1-2):245-55. doi: 10.1016/j.chroma.2005.12.046. Epub 2006 Jan 6.
The cross-axis coil planet centrifuge (X-axis CPC) is useful for partitioning macromolecules with aqueous-aqueous polymer phase systems. The floor model we have built with a pair of separation columns had some shortcomings such as requirement of large space, short life of the flow tubes, and difficulty in installing columns. In order to improve the partition efficiency and the utility of counter-current chromatography (CCC), a new small-scale X-axis CPC was designed and fabricated in our laboratory. The down-sizing of the apparatus was done by reducing the scale to about 1/2 of our original model of X-1.5L type with several improvements. Performance of the apparatus was evaluated on protein separation using an aqueous-aqueous polymer phase system composed of polyethylene glycol 1000 and dibasic potassium phosphate with four multilayer coiled columns. A series of experiments revealed that the combination of right- and left-handed coils produced the best partition efficiencies for both lower and upper mobile phases by selecting the revolution direction. The overall results indicate that the head-tail elution mode substantially affects to the peak resolution and stationary phase retention. This new X-axis CPC would be useful for the separation of various kinds of biologically active compounds.
交叉轴盘管行星式离心机(X轴CPC)可用于利用水-水聚合物相体系对大分子进行分离。我们构建的带有一对分离柱的落地式模型存在一些缺点,如占用空间大、流管寿命短以及柱体安装困难等。为了提高逆流色谱(CCC)的分离效率和实用性,我们实验室设计并制造了一种新型小型X轴CPC。通过将规模缩小至约为我们原来X-1.5L型模型的1/2,并进行了多项改进来实现仪器的小型化。使用由聚乙二醇1000和磷酸氢二钾组成的水-水聚合物相体系以及四个多层盘管柱,对该仪器在蛋白质分离方面的性能进行了评估。一系列实验表明,通过选择旋转方向,右手和左手盘管的组合对上下流动相均产生了最佳的分离效率。总体结果表明,头尾洗脱模式对峰分辨率和固定相保留有显著影响。这种新型X轴CPC将有助于分离各种生物活性化合物。