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Orthogonality of Separation in Two-Dimensional Liquid Chromatography

机译:二维液相色谱分离的正交性

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Two-dimensional liquid chromatography is often used to reduce the proteomic sample complexity prior to tandem mass spectrometry analysis. The 2D-LC performance depends on the peak capacity in both chromatographic dimensions, and separation orthogonality. The peak capacity and selectivity of many LC modes for peptides is not well known, and mathematical characterization for orthogonality is underdeveloped. Consequently, it is difficult to estimate the performance of 2D-LC for peptide separation. The goal of this paper was to investigate a selectivity of common LC modes and to identify the 2D-LC systems with a useful orthogonality. A geometric approach for orthogonality description was developed and applied for estimation of a practical peak 2D-LC capacity. Selected LC modes including various RP, SCX, SEC, and HILIC were combined in 2D-LC setups. SCX-RP, HILIC-RP, and RP-RP 2D systems were found to provide suitable orthogonality. The RP-RP system (employing significantly different pH in both RP separation dimensions) had the highest practical peak capacity of 2D-LC systems investigated.
机译:在进行串联质谱分析之前,通常使用二维液相色谱法来降低蛋白质组学样品的复杂性。 2D-LC性能取决于色谱尺寸和分离正交性的峰容量。肽的许多LC模式的峰容量和选择性不是众所周知的,并且正交性的数学表征还不完善。因此,难以估计用于肽分离的2D-LC的性能。本文的目的是研究常见LC模式的选择性,并确定具有有用正交性的2D-LC系统。开发了一种用于正交性描述的几何方法,并将其用于估算实际2D-LC峰容量。在2D-LC设置中组合了包括各种RP,SCX,SEC和HILIC在内的选定LC模式。发现SCX-RP,HILIC-RP和RP-RP 2D系统提供合适的正交性。 RP-RP系统(在两个RP分离尺寸上采用显着不同的pH值)在所研究的2D-LC系统中具有最高的实际峰容量。

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