Department of Applied Chemistry, Keio University, 3-14-1 Hiyoshi, Kohoku-ku, 223-8522 Yokohama, Japan.
J Mater Chem B. 2019 Aug 7;7(31):4771-4777. doi: 10.1039/c9tb01014a.
We developed a biomineral-inspired hybrid material composed of CaCO3 and an organic polymer as a column packing material for HPLC. This material combines a hierarchical mesoporous structure and the functionality of the polymer. The surface of monodispersed mesoporous CaCO3 microspheres was modified with poly(maleic acid-alt-1-octadecene) (PMAcO) comprising hydrophobic alkyl chains and anionic carboxylate groups. PMAcO adsorbed onto the surface of CaCO3 through electrostatic interaction between Ca2+ sites and carboxylate groups, resulting in an octadecene coated microsphere interface. These microspheres were applied as a HPLC column and exhibited reversed-phase retention behavior in the separation of alkylbenzenes. This column showed high alkaline mobile phase resistance compared with the conventionally applied ODS column packing material. Quantitative analysis of the basic antidepressants clomipramine and imipramine spiked into whole blood was achieved with an alkaline mobile phase, demonstrating the potential of the biomineral-inspired material as a HPLC stationary phase for practical applications in routine analyses of basic drugs requiring alkaline mobile phases.
我们开发了一种基于生物矿化的混合材料,由 CaCO3 和有机聚合物组成,用作 HPLC 的柱填料。这种材料结合了分级介孔结构和聚合物的功能。单分散介孔 CaCO3 微球的表面用包含疏水烷基链和阴离子羧酸根的聚(马来酸-共-1-十八烯)(PMAcO)进行修饰。PMAcO 通过 Ca2+ 位点和羧酸根之间的静电相互作用吸附在 CaCO3 表面上,从而在 CaCO3 表面上形成十八烯涂层微球界面。这些微球被用作 HPLC 柱,并在烷基苯的分离中表现出反相保留行为。与传统应用的 ODS 柱填料相比,该柱在碱性流动相下表现出高耐碱性。通过碱性流动相实现了碱性抗抑郁药氯米帕明和丙咪嗪全血加标的定量分析,这表明基于生物矿化的材料有潜力作为 HPLC 固定相,用于需要碱性流动相的常规碱性药物分析。