反流式色谱用新型交叉轴线圈行星离心机的研究。1 .仪器的设计,固定相的保留,以及用聚合物相系统分离蛋白质的效率。

K Shinomiya, J M Menet, H M Fales, Y Ito
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引用次数: 50

摘要

在前人研究的基础上,设计了一种改进的跨轴同步流圈行星离心机模型。该装置具有多用途的特点,即分析柱和制备柱都可以被安置在偏离中心和中心位置。每一种都有分离的优点。用不同的两相溶剂体系分离生物聚合物,考察了固定相的保留。在最佳条件下,分析柱和制备柱均表现出令人满意的固定相保留。用聚乙二醇-磷酸钾双相系统对一组蛋白质样品的分离进行了评价。在两种类型的色谱柱中,所有蛋白质都以260至670理论板的分割效率被分解。进一步的研究表明,蛋白质相对较低的分配效率主要是由于它们的高分子质量或每个物种内部的分子异质性,而不是由于聚合物相体系的高粘度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Studies on a new cross-axis coil planet centrifuge for performing counter-current chromatography. I. Design of the apparatus, retention of the stationary phase, and efficiency in the separation of proteins with polymer phase systems.

An improved model of the cross-axis synchronous flow-through coil planet centrifuge has been designed in light of previous studies. The apparatus has a versatile feature in that both analytical and preparative columns can be accommodated in both off-center and central positions. Each has merit in separations. Retention of stationary phase was examined with various two-phase solvent systems used for the separation of biopolymers. Both analytical and preparative columns showed satisfactory retention of the stationary phase under optimum conditions. The apparatus was evaluated in separation of a set of protein samples using a polyethylene glycol-potassium phosphate biphasic system. In both types of columns all proteins were resolved with partition efficiencies of 260 to 670 theoretical plates. Further studies indicated that the relatively low partition efficiency of proteins is mainly attributed to their high molecular mass or molecular heterogeneity within each species rather than due to the high viscosity of the polymer phase system.

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