首页> 外文期刊>Chirality: The pharmacological, biological, and chemical consequences of molecular asymmetry >Development of a chiral stationary phase based on cinchonidine. Comparison with a quinine-based chiral column
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Development of a chiral stationary phase based on cinchonidine. Comparison with a quinine-based chiral column

机译:基于辛可尼定的手性固定相的开发。与基于奎宁的手性色谱柱比较

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摘要

A chiral anion-exchanger stationary phase based on cinchonidine (CD)was developed. Two columns were packed with and without endcapping (EC) treatment (CD-chiral stationary phase[CD-CSP(EC)] and [CD-CSP], respectively) and studied for their ability to separate N-2,4-dinitrophenyl α-amino acids (DNP-amino acids) enantiomers over a temperature range of 10-40°C with a hydro-organic buffer mobile phase. The more hydrophobic, endcapped stationary phase showed significantly larger retentive capacity than the non-endcapped one. The apparent thermodynamic transfer parameters of the enantiomers from the mobile to both CSPs were estimated from van't Hoff plots within the cited temperature range. Similar studies with two natural quinine-based columns (QN-CSP and QN-CSP(EC)) were previously reported. In this work, a critical comparison in the chiral recognition ability to DNP-amino acids of these cinchonidine and QN-based chiral columns was drawn. It has been found that QN-based CSPs show greater chiral recognition capability towards these derivatives than CD-CSPs. The influence of the QN methoxy group on the equilibrium constants of the enantioselective interaction between these DNP-amino acids with these two cinchona CSPs could be assessed.
机译:开发了基于辛可尼定(CD)的手性阴离子交换固定相。填充和不进行封端(EC)处理的两根色谱柱(分别为CD-手性固定相[CD-CSP(EC)]和[CD-CSP]),并研究了它们分离N-2,4-二硝基苯基α的能力-氨基酸(DNP-氨基酸)对映异构体,在10-40°C的温度范围内具有有机缓冲液流动相。疏水性更高,封端的固定相显示出比未封端的显着更大的保留能力。对映体从流动物到两个CSP的表观热力学转移参数是根据引用的温度范围内的van't Hoff图估算的。先前已报道了使用两种基于奎宁的天然色谱柱(QN-CSP和QN-CSP(EC))进行的类似研究。在这项工作中,对这些辛可尼定和基于QN的手性色谱柱对DNP氨基酸的手性识别能力进行了关键比较。已经发现基于QN的CSP对这些衍生物表现出比CD-CSP更大的手性识别能力。可以评估QN甲氧基对这些DNP氨基酸与这两种金鸡纳CSP之间对映选择性相互作用的平衡常数的影响。

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