首页> 外文期刊>Journal of chromatography, A: Including electrophoresis and other separation methods >On-line comprehensive two-dimensional separations of charged compounds using reversed-phase high performance liquid chromatography and hydrophilic interaction chromatography. Part I: Orthogonality and practical peak capacity considerations
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On-line comprehensive two-dimensional separations of charged compounds using reversed-phase high performance liquid chromatography and hydrophilic interaction chromatography. Part I: Orthogonality and practical peak capacity considerations

机译:使用反相高效液相色谱和亲水相互作用色谱对带电化合物进行在线全面二维分离。第一部分:正交性和实际峰值容量注意事项

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Comprehensive on-line two-dimensional liquid chromatography is expected to generate impressive peak capacities, which makes it a method of choice for the analysis of complex samples such as pharmaceutical or biological ones. A comparative study of different sets of chromatographic conditions including stationary phase, mobile phase and column temperature was carried out with mixtures of representative solutes in order to find out the best two-dimensional analytical conditions for charged compounds. Our approach focused on ultra-fast gradient runs in second dimension using HT-UHPLC conditions. The choice of volatile buffers was intended for future coupling with mass spectrometry in order to get another relevant dimension. The potential of various pairs of chromatographic systems was examined by means of two-dimensional gradient data. An attempt is made to rationalize the concept of orthogonality and a method is proposed to assess, for a given pair of chromatographic systems, both the degree of orthogonality and the practical peak capacity. It is shown that the degree of orthogonality between both dimensions is a critical factor but it is not sufficient to definitely appreciate the potential of a given pair of systems. The combination of HILIC and RPLC (HILIC × RPLC or RPLC × HILIC), although providing a very high degree of orthogonality, is disappointing due to the poor peak capacities obtained in HILIC especially with peptide samples. RPLC systems offer a large variety of analytical conditions, some of them leading to appropriate degrees of orthogonality when they are combined. More importantly, due to high column efficiencies along with large separation power, some combinations of RPLC systems leads to very high practical peak capacities.
机译:全面的在线二维液相色谱有望产生令人印象深刻的峰容量,这使其成为分析复杂样品(例如制药或生物样品)的一种选择方法。用代表性溶质的混合物对包括固定相,流动相和柱温在内的不同色谱条件进行了比较研究,以找出带电荷化合物的最佳二维分析条件。我们的方法专注于使用HT-UHPLC条件在二维中进行超快速梯度洗脱。挥发性缓冲液的选择是为了将来与质谱联用,以便获得另一个相关尺寸。通过二维梯度数据检查了各对色谱系统的潜力。尝试合理化正交性的概念,并提出了一种方法,用于针对给定的一对色谱系统评估正交性程度和实际峰容量。结果表明,两个维度之间的正交程度是一个关键因素,但不足以明确地了解给定系统对的潜力。 HILIC和RPLC的组合(HILIC×RPLC或RPLC×HILIC)尽管提供了非常高的正交性,但令人失望,因为H​​ILIC中获得的峰容量很低,尤其是对于肽样品。 RPLC系统提供了多种分析条件,其中一些条件在组合时会导致适当的正交度。更重要的是,由于高柱效和大分离能力,RPLC系统的某些组合导致很高的实际峰容量。

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