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基于聚倍半硅氧烷微球的亲水作用/反相混合模式色谱填料的制备与评价

[Preparation and evaluation of hydrophilic interaction/reversed-phase mixed-mode chromatographic packing based on polylsilsesquioxane microspheres].

作者信息

Lü Qiannan

机构信息

School of Pharmaceutical Science and Technology, Tianjin University, Tianjin 300072, China.

出版信息

Se Pu. 2017 Sep 8;35(9):927-933. doi: 10.3724/SP.J.1123.2017.05006.

Abstract

Hydrophilic interaction (HILIC)/reversed-phase (RPLC) mixed-mode chromatography is widely used in separating both hydrophobic and hydrophilic compounds, but its pH range is limited which is harmful to the separation of alkaline drugs. Monodispersed and porous cysteine-modified vinyl functionalized polymethylsilsesquioxane (C-V-PMSQ) microspheres were prepared by thiol-ene click chemistry. Elemental analysis revealed that cysteine was successfully bonded to the surface of microspheres. C-V-PMSQ microspheres had excellent monodispersity, favorable chemical stability and simple preparation process. The chromatographic behavior of C-V-PMSQ stationary phase was investigated by employing several nucleosides and nucleic acids under HILIC mode and RPLC mode. Retention factors versus volume percentage of aqueous solution exhibited a U-curve, which can be evaluated as an indication for HILIC/RPLC mixed-mode behavior of the stationary phase. This new stationary phase presented stronger retention behavior when employing alkylbenzenes as evaluation system. In addition, a series of hydrophilic and hydrophobic compounds were separated at the same time using this new stationary phase. Furthermore, baseline separation for the major three active components of Chinese herbal medicine was achieved under HILIC and RPLC modes with highly alkaline mobile phase. The excellent chemical stability and base deactivated nature make the organosilicas ideal stationary phases for the separation of basic compounds. What's more, it even can achieve two-dimensional liquid chromatography separation on an HPLC column.

摘要

亲水作用(HILIC)/反相(RPLC)混合模式色谱法广泛应用于分离疏水性和亲水性化合物,但其pH范围有限,这对碱性药物的分离不利。通过硫醇-烯点击化学制备了单分散多孔半胱氨酸修饰的乙烯基官能化聚甲基倍半硅氧烷(C-V-PMSQ)微球。元素分析表明半胱氨酸成功键合到微球表面。C-V-PMSQ微球具有优异的单分散性、良好的化学稳定性和简单的制备过程。在HILIC模式和RPLC模式下,采用几种核苷和核酸研究了C-V-PMSQ固定相的色谱行为。保留因子与水溶液体积百分比呈现U形曲线,可作为固定相HILIC/RPLC混合模式行为的一个指标。当采用烷基苯作为评价体系时,这种新型固定相表现出更强的保留行为。此外,使用这种新型固定相同时分离了一系列亲水性和疏水性化合物。此外,在HILIC和RPLC模式下,使用高碱性流动相实现了中药主要三种活性成分的基线分离。优异的化学稳定性和碱钝化性质使有机硅成为分离碱性化合物的理想固定相。更重要的是,它甚至可以在HPLC柱上实现二维液相色谱分离。

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