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新型单色谱技术同时分析水溶性和脂溶性维生素,该技术将超临界流体色谱和液相色谱统一。

Simultaneous analysis for water- and fat-soluble vitamins by a novel single chromatography technique unifying supercritical fluid chromatography and liquid chromatography.

机构信息

Department of Biotechnology, Graduate School of Engineering, Osaka University, 2-1 Yamadaoka, Suita, Osaka 565-0871, Japan.

Department of Biotechnology, Graduate School of Engineering, Osaka University, 2-1 Yamadaoka, Suita, Osaka 565-0871, Japan.

出版信息

J Chromatogr A. 2014 Oct 3;1362:270-7. doi: 10.1016/j.chroma.2014.08.003. Epub 2014 Aug 12.

Abstract

Chromatography techniques usually use a single state in the mobile phase, such as liquid, gas, or supercritical fluid. Chromatographers manage one of these techniques for their purpose but are sometimes required to use multiple methods, or even worse, multiple techniques when the target compounds have a wide range of chemical properties. To overcome this challenge, we developed a single method covering a diverse compound range by means of a "unified" chromatography which completely bridges supercritical fluid chromatography and liquid chromatography. In our method, the phase state was continuously changed in the following order; supercritical, subcritical and liquid. Moreover, the gradient of the mobile phase starting at almost 100% CO2 was replaced with 100% methanol at the end completely. As a result, this approach achieved further extension of the polarity range of the mobile phase in a single run, and successfully enabled the simultaneous analysis of fat- and water-soluble vitamins with a wide logP range of -2.11 to 10.12. Furthermore, the 17 vitamins were exceptionally separated in 4min. Our results indicated that the use of dense CO2 and the replacement of CO2 by methanol are practical approaches in unified chromatography covering diverse compounds. Additionally, this is a first report to apply the novel approach to unified chromatography, and can open another door for diverse compound analysis in a single chromatographic technique with single injection, single column and single system.

摘要

色谱技术通常在流动相中使用单一状态,如液体、气体或超临界流体。色谱学家根据自己的目的管理其中一种技术,但有时需要使用多种方法,甚至更糟的是,当目标化合物具有广泛的化学性质时,需要使用多种技术。为了克服这一挑战,我们开发了一种单一方法,通过“统一”色谱法涵盖广泛的化合物范围,该方法完全连接了超临界流体色谱法和液相色谱法。在我们的方法中,相态依次连续变化;超临界、亚临界和液体。此外,以几乎 100%CO2 开始的流动相梯度最终完全用 100%甲醇替代。结果,该方法在单次运行中进一步扩展了流动相的极性范围,并成功实现了具有 -2.11 至 10.12 广泛 logP 范围的脂溶性和水溶性维生素的同时分析。此外,17 种维生素在 4 分钟内得到了极好的分离。我们的结果表明,在涵盖多种化合物的统一色谱中使用密集 CO2 和用甲醇替代 CO2 是实用的方法。此外,这是首次将该新方法应用于统一色谱,为单一进样、单一色谱柱和单一系统中的单一色谱技术对多种化合物的分析开辟了另一扇门。

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