首页> 外文期刊>Journal of chromatography, A: Including electrophoresis and other separation methods >Pulsed elution modulation for on-line comprehensive two-dimensional liquid chromatography coupling reversed phase liquid chromatography and hydrophilic interaction chromatography
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Pulsed elution modulation for on-line comprehensive two-dimensional liquid chromatography coupling reversed phase liquid chromatography and hydrophilic interaction chromatography

机译:在线综合二维液相色谱偶联反相液相色谱和亲水性相互作用色谱法的脉冲洗脱调节

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In this work, a reversed phase liquid chromatography (RPLC) coupling to hydrophilic interaction chromatography (HILIC) system has been constructed, combining with pulsed elution reversed phase liquid chromatography (PE-RPLC) and HILIC to comprehensively analyze P. ginseng root extract, which is rich in saponins. By the application of pulsed elution (PE) modulation technique, the proposed RPLC x HILIC system allows the chromatographic separation to be optimized independently in both dimensions. In the first dimension (D-1), PE modulation is achieved by the separation of a complex mixture, such as P. ginseng root extract, with a PE gradient. This PE gradient contains a set of pulses where the solvent strength increases gradually. Thus, the modulation of D-1 eluent is realized by stepwise-pulse fractionation, rather than by a traditional two-dimensional interface. Furthermore, the number of fractions and the fractionated period can be regulated independently, which leads to independent adjustment of the separation cycle in the second dimension (D-2) separation without the loss of D-1 separation efficiency. To overcome the inherent solvent incompatibility of RPLC x HILIC, we introduced a newly developed trapping interface, equipped with bypass. The result indicates excellent separation of saponins in P. ginseng root extract. Compared with the traditional modulation method, the proposed RPLC x HILIC system has extreme flexibility, those modulation time could be regulated in a large range without re-optimizing the D-1 PE gradient. Worthily mentioned, the proposed RPLC x HILIC system shows excellent orthogonality, and 20% more peaks could be obtained with current method compared to the traditional value based modulation method. Independent regulation of both dimensions could enable the proposed modulation method to be widely applied for complex samples analysis in ordinary laboratory. (C) 2018 Elsevier B.V. All rights reserved.
机译:在这项工作中,已经构建了与亲水相互作用色谱(HILIC)系统的反相液相色谱(RPLC)偶联,与脉冲洗脱反相液相色谱(PE-RPLC)和HILIC组合以综合分析P.人参根提取物,其富含皂苷。通过脉冲洗脱(PE)调制技术的应用,所提出的RPLC X HILIC系统允许色谱分离在两个尺寸中独立地优化。在第一尺寸(D-1)中,通过将复杂的混合物(例如P.人参根提取物)分离,具有PE梯度来实现PE调节。该PE梯度含有一组脉冲,其中溶剂强度逐渐增加。因此,通过逐步脉冲分级而不是通过传统的二维界面来实现D-1洗脱液的调制。此外,可以独立地调节级分和分馏时段的数量,这导致在第二尺寸(D-2)分离中的分离循环的独立调节,而不会损失D-1分离效率。为了克服RPLC X HILIC的固有溶剂不相容,我们推出了一种新开发的诱捕界面,配备旁路。结果表明,皂苷在人参根提取物中优异的分离。与传统调制方法相比,所提出的RPLC X HILIC系统具有极大的灵活性,这些调制时间可以在大范围内调节,而无需重新优化D-1 PE梯度。值得注意的是,所提出的RPLC X HILIC系统显示出优异的正交性,与传统的基于价值的调制方法相比,通过电流方法可以获得20%的峰值。独立调节两种尺寸可以使得提出的调制方法广泛应用于普通实验室中的复杂样品分析。 (c)2018年elestvier b.v.保留所有权利。

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