CC Biotech LLC, 9700 Great Seneca Highway, Rockville, MD 20850-3308, USA.
J Chromatogr A. 2011 Sep 9;1218(36):6148-55. doi: 10.1016/j.chroma.2011.06.007. Epub 2011 Jun 12.
An important advance in countercurrent chromatography (CCC) carried out in open flow-tubing coils, rotated in planetary centrifuges, is the new design to spread out the tubing in spirals. More spacing between the tubing was found to significantly increase the stationary phase retention, such that now all types of two-phase solvent systems can be used for liquid-liquid partition chromatography in the J-type planetary centrifuges. A spiral tubing support (STS) frame with circular channels was constructed by laser sintering technology into which FEP tubing was placed in 4 spiral loops per layer from the bottom to the top and a cover affixed allowing the tubing to connect to flow-tubing of the planetary centrifuge. The rotor was mounted and run in a P.C. Inc. type instrument. Examples of compounds of molecular weights ranging from <300 to approximately 15,000 were chromatographed in appropriate two-phase solvent systems to assess the capability for separation and purification. A mixture of small molecules including aspirin was completely separated in hexane-ethyl acetate-methanol-water. Synthetic peptides including a very hydrophobic peptide were each purified to a very high purity level in a sec-butanol solvent system. In the STS rotor high stationary phase retention was possible with the aqueous sec-butanol solvent system at a normal flow rate. Finally, the two-phase aqueous polyethylene glycol-potassium phosphate solvent system was applied to separate a protein from a lysate of an Escherichia coli expression system. These experiments demonstrate the versatility of spiral CCC using the STS rotor.
逆流色谱(CCC)在行星离心机中旋转的开放式流通管线圈中的一个重要进展是新的螺旋展开管设计。发现管之间的更大间距显著增加了固定相保留,使得现在所有类型的两相溶剂系统都可以用于 J 型行星离心机中的液-液分配色谱。通过激光烧结技术构建了带有圆形通道的螺旋管支架(STS)框架,将 FEP 管放置在从底部到顶部的 4 个螺旋环中,并固定一个盖子,允许管连接到行星离心机的流通管。转子安装并在 P.C. Inc. 型仪器中运行。将分子量范围从 <300 到大约 15,000 的化合物在适当的两相溶剂系统中进行色谱分析,以评估分离和纯化的能力。包括阿司匹林在内的小分子混合物在己烷-乙酸乙酯-甲醇-水中完全分离。包括非常疏水性肽在内的合成肽在正丁醇溶剂系统中各自被纯化到非常高的纯度水平。在 STS 转子中,在正常流速下,高固定相保留是可能的,采用水相正丁醇溶剂系统。最后,两相水相聚乙二醇-磷酸钾溶剂系统被应用于从大肠杆菌表达系统的裂解物中分离蛋白质。这些实验证明了使用 STS 转子的螺旋 CCC 的多功能性。