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首页> 外文期刊>Journal of Chromatographic Science >Enantioseparation and chiral recognition of α-cyclohexylmandelic acid and methyl α-cyclohexylmandelate on hydroxypropyl-β-cyclodextrin as chiral selector: Hplc and molecular modeling
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Enantioseparation and chiral recognition of α-cyclohexylmandelic acid and methyl α-cyclohexylmandelate on hydroxypropyl-β-cyclodextrin as chiral selector: Hplc and molecular modeling

机译:羟丙基-β-环糊精作为手性选择剂的α-环己基扁桃酸和α-环己基扁桃酸甲酯的对映体分离和手性识别:Hplc和分子模拟

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摘要

Enantioseparations of (R/S)-α-cyclohexylmandelic acid [(R/S)-CHMA] and methyl (R/S)-α-cyclohexylmandelate [(R/S)-MCHMA] were performed on an achiral column (ODS) with 2-hydroxypropyl-β-cyclodextrin (HP-β-CD) as a chiral mobile phase additive. The influences of chromatographic conditions on the retention behavior of (R/S)-CHMA and (R/S)-MCHMA were studied in detail. Meanwhile, the thermodynamics parameters of enantioseparations for (R/S)-CHMA and (R/S)-MCHMA were determined to discuss driven power in the enantioseparation process. The inclusion complexation of HP-β-CD with each enantiomer for (R/S)-CHMA and (R/S)-MCHMA was simulated by molecular docking to understand the chiral recognition mechanism of (R/S)-CHMA and (R/S)-MCHMA on HP-β-CD. The results showed that the chiral recognition ability of enantiometers of (R/S)-CHMA and (R/S)-MCHMA on HP-β-CD is better than α-CD, β-CD, γ-CD and DM-β-CD. Under the selected chromatographic conditions, baseline separations of enantiomers of (R/S)-CHMA and (R/S)-MCHMA were achieved. It is proved that the stoichiometry for (R/S)-CHMA-HP-β-CD and (R/S)-MCHMA-HP-β-CD complexes is 1:1. However, the results of thermodynamics parameters analysis and molecular modeling show that the enantioseparations of CHMA and MCHMA on HP-β-CD are enthalpy-driven processes and the primary driving forces responsible for chiral recognition are hydrophobic forces, dipole-dipole interaction, charge-transfer and hydrophobic interaction.
机译:(R / S)-α-环己基扁桃酸[(R / S)-CHMA]和(R / S)-α-环己基扁桃酸甲酯[(R / S)-MCHMA]的对映体分离是在非手性色谱柱(ODS)上进行的用2-羟丙基-β-环糊精(HP-β-CD)作为手性流动相添加剂。详细研究了色谱条件对(R / S)-CHMA和(R / S)-MCHMA保留行为的影响。同时,确定了(R / S)-CHMA和(R / S)-MCHMA对映体的热力学参数,以讨论对映体分离过程中的驱动力。通过分子对接模拟HP-β-CD与(R / S)-CHMA和(R / S)-MCHMA的每个对映体的包合络合物,了解(R / S)-CHMA和(R / S)-MCHMA在HP-β-CD上。结果表明,(R / S)-CHMA和(R / S)-MCHMA对映体在HP-β-CD上的手性识别能力优于α-CD,β-CD,γ-CD和DM-β -光盘。在选定的色谱条件下,实现了(R / S)-CHMA和(R / S)-MCHMA对映体的基线分离。已证明(R / S)-CHMA-HP-β-CD和(R / S)-MCHMA-HP-β-CD配合物的化学计量比为1:1。然而,热力学参数分析和分子建模的结果表明,CHMA和MCHMA在HP-β-CD上的对映体分离是焓驱动过程,而负责手性识别的主要驱动力是疏水力,偶极-偶极相互作用,电荷-转移和疏水相互作用。

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