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Novel design for centrifugal counter-current chromatography: VI. Ellipsoid column

机译:离心逆流色谱的新颖设计:VI。椭圆柱

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摘要

A novel ellipsoid column was designed for centrifugal counter-current chromatography. Performance of the ellipsoid column with a capacity of 3.4 mL was examined with three different solvent systems composed of 1-butanol-acetic acid-water (4:1:5, v/v) (BAW), hexane-ethyl acetate-methanol-0.1 M HCl (1:1:1:1, v/v) (HEMH), and 12.5% (w/w) PEG1000 and 12.5% (w/w) dibasic potassium phosphate in water (PEG-DPP) each with suitable test samples. In dipeptide separation with BAW system, both stationary phase retention (Sf) and peak resolution (Rs) of the ellipsoid column were much higher at 0° column angle (column axis parallel to the centrifugal force) than at 90° column angle (column axis perpendicular to the centrifugal force), where elution with the lower phase at a low flow rate produced the best separation yielding Rs at 2.02 with 27.8% Sf at a flow rate of 0.07 ml/min. In the DNP-amino acid separation with HEMW system, the best results were obtained at a flow rate of 0.05 ml/min with 31.6% Sf yielding high Rs values at 2.16 between DNP-DL-glu and DNP-β-ala peaks and 1.81 between DNP-β-ala and DNP-L-ala peaks. In protein separation with PEG-DPP system, lysozyme and myolobin were resolved at Rs of 1.08 at a flow rate of 0.03 ml/min with 38.9% Sf. Most of those Rs values exceed those obtained from the column under similar experimental conditions previously reported.Chromatogram of protein separation by centrifugal counter-current chromatography using ellipsoid column. Samples: lysozyme, myoglobin; solvent system: PEG-DPP; flow rate: 0.03 mL/min; rotational speed: 1000 rpm; capacity: 3.4 mL; detection wavelength: 280 nm; retention of stationary phase: 38.9%.
机译:设计了一种新型的椭圆柱用于离心逆流色谱法。用三种不同的溶剂系统(由1-丁醇-乙酸-水(4:1:5,v / v)(BAW),己烷-乙酸乙酯-甲醇-甲醇)组成的容量为3.4 mL的椭圆柱色谱柱进行了性能分析。 0.1 M HCl(1:1:1:1,v / v)(HEMH)和12.5%(w / w)PEG1000和12.5%(w / w)磷酸氢二钾水溶液(PEG-DPP)中的每一种都合适测试样品。在使用BAW系统进行二肽分离中,椭圆柱的固定相保留(Sf)和峰分离度(Rs)在0°柱角(平行于离心力的柱轴)时要比在90°柱角(柱轴向)高得多垂直于离心力),其中低流速下相的洗脱产生了最佳分离效果,在0.02 ml / min的流速下,Rs为2.02,Sf为27.8%。在使用HEMW系统进行DNP-氨基酸分离时,以0.05 ml / min的流速和31.6%Sf可获得最佳结果,在DNP-DL-glu和DNP-β-ala峰之间的Rs值在2.16和1.81之间在DNP-β-ala和DNP-L-ala峰之间。在使用PEG-DPP系统进行蛋白质分离中,溶菌酶和肌红蛋白的Rs为1.08,流速为0.03 ml / min,Sf为38.9%。这些Rs值中的大多数都超过了以前报道的类似实验条件下从色谱柱获得的Rs值。<!-fig ft0-> <!-fig mode = article f1-> <!-标题a7- →使用椭圆体柱的离心逆流色谱法分离蛋白质的色谱图。样品:溶菌酶,肌红蛋白;溶剂系统:PEG-DPP;流速:0.03 mL / min;转速:1000 rpm;容量:3.4毫升;检测波长:280nm;固定相保留率:38.9%。

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