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Silica-based monolithic columns with mixed-mode reversed-phase/weak anion-exchange selectivity principle for high-performance liquid chromatography

机译:具有高效液相色谱混合模式反相/弱阴离子交换选择性原理的硅基整体柱

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摘要

This article describes the synthesis, chromatographic characterization, and performance evaluation of analytical (100 x 4.6 mm id) and semipreparative (100 x 10 mm id) monolithic silica columns with mixed-mode RP/weak anion-exchange (RP/WAX) surface modification. The monolithic RP/WAX columns were obtained by immobilization of N-(10-undecenoyl)-3-aminoquinuclidine onto thiol-modified monolithic silica columns (Chromolith (R)) by a radical addition reaction. Their chromatographic characterization by Engelhardt and Tanaka tests revealed slightly lower hydrophobic selectivities than C-8 phases, as well as higher polarity and also improved shape selectivity than RP-18e silica rods. The surface modification enabled separation by both RP and anion-exchange chromatography principles, and thus showed complementary selectivities to the RP-18e monoliths. The mixed-mode monoliths have been tested for the separation of peptides and turned out to be particularly useful for hydrophilic acidic peptides, which are usually insufficiently retained on RP-18e monolithic columns. Compared to a corresponding particulate RP/WAX column (5 mu m, 10 nm pore diameter), the analytical RP/WAX monolith caused lower system pressure drops and showed, as expected, higher efficiency (e.g. by a factor of about 2.5 lower C-term for a tetrapeptide). The upscaling from the analytical to semipreparative column dimension was also successful.
机译:本文介绍了具有混合模式RP /弱阴离子交换(RP / WAX)表面修饰的分析型(100 x 4.6 mm内径)和半制备型(100 x 10 mm内径)整体硅胶柱的合成,色谱表征和性能评估。 RP / WAX整体柱是通过自由基加成反应将N-(10-十一碳烯酰基)-3-氨基喹核苷固定在硫醇修饰的整体硅胶柱(Chromolith(R))上而获得的。通过Engelhardt和Tanaka测试的色谱特征表明,疏水选择性比C-8相略低,极性更高,并且形状选择性比RP-18e硅胶棒更高。表面改性使得可以通过RP和阴离子交换色谱原理进行分离,因此显示出对RP-18e整体填料的互补选择性。已经测试了混合模式的整体式分离肽的方法,结果证明该方法对于亲水性酸性肽特别有用,而亲水性酸性肽通常无法充分保留在RP-18e整体式色谱柱上。与相应的颗粒RP / WAX色谱柱(5μm,10 nm孔径)相比,分析型RP / WAX整体柱导致较低的系统压降,并显示出较高的效率(例如,C-值降低了约2.5倍)四肽的术语)。从分析柱尺寸扩大到半制备柱尺寸也成功。

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