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Direct Enantiomeric Resolution of Seventeen Racemic 14-Dihydropyridine-Based Hexahydroquinoline Derivatives by HPLC

机译:通过HPLC直接对十七种外消旋14-二氢吡啶基六氢喹啉衍生物进行对映体拆分

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摘要

1,4-Dihydropyridine (DHP) scaffold holds an outstanding position with its versatile pharmacological properties among all heterocyclic compounds. Although most of the commercially available DHPs are marketed as a racemic mixture, the chiral center at C-4 can lead to even opposite pharmacological activities between the enantiomers. In the present study, enantioseparation of seventeen DHP structural analogues, consisting of either pharmacologically active or newly synthesized derivatives, (M2-4, MD5, HM2, HM10, CE5, N11, N10, N7, M11, MC6-8, MC13, MD23, and 42IIP) by high-performance liquid chromatography was investigated using immobilized polysaccharide-based chiral stationary phase, Chiralpak IC column. Due to the solvent versatility of the covalently immobilized chiral stationary phase in enantiomer separation, multiple elution modes including standard normal phase, nonstandard mobile phase, and reversed phase were used to expand the possibility to find the optimum enantioselective conditions for the tested analytes. Under appropriate separation conditions, complete enantiomeric separation was obtained for nearly all compounds except MC6-8 and MC13 which contained two chiral centers. Additionally, the effects of the polar modifier, the additive, and column temperature on the chiral recognition were evaluated. The thermodynamic parameters calculated according to the linear van’t Hoff equation indicated that the chiral separations in this study were enthalpy-driven or entropy-driven. Some parameters of method validation such as linearity, limit of quantitation, and repeatability were also measured for all studied compounds to prove the reliability of the method.
机译:1,4-二氢吡啶(DHP)支架以其广泛的药理特性在所有杂环化合物中均处于突出地位。尽管大多数市售DHP以消旋混合物形式销售,但C-4的手性中心甚至可以导致对映体之间的相反药理活性。在本研究中,对映体分离了17种DHP结构类似物,包括药理活性或新合成的衍生物(M2-4,MD5,HM2,HM10,CE5,N11,N10,N7,M11,MC6-8,MC13,MD23 ,和42IIP)进行了高效液相色谱研究,使用的是固定化的基于多糖的手性固定相Chiralpak IC色谱柱。由于共价固定的手性固定相在对映异构体分离中的溶剂通用性,因此采用多种洗脱模式,包括标准正相,非标准流动相和反相,可以扩大找到被测分析物最佳对映选择性的可能性。在适当的分离条件下,除含有两个手性中心的MC6-8和MC13之外,几乎所有化合物均获得了完全对映体分离。另外,评估了极性改性剂,添加剂和柱温对手性识别的影响。根据线性van't Hoff方程计算的热力学参数表明,本研究中的手性分离是焓驱动或熵驱动的。还对所有研究的化合物进行了方法验证的一些参数,如线性,定量限和可重复性,以证明该方法的可靠性。

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