首页> 外文期刊>Chirality: The pharmacological, biological, and chemical consequences of molecular asymmetry >Liquid Chromatographic Retention Behavior and Enantiomeric Separation of Three Chiral Center β-Blocker Drug (Nadolol) Using Heptakis (6-Azido-6-deoxy-2, 3-di-O-phenylcarbamolyted) β-Cyclodextrin Bonded Chiral Stationary Phase
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Liquid Chromatographic Retention Behavior and Enantiomeric Separation of Three Chiral Center β-Blocker Drug (Nadolol) Using Heptakis (6-Azido-6-deoxy-2, 3-di-O-phenylcarbamolyted) β-Cyclodextrin Bonded Chiral Stationary Phase

机译:庚烷(6-叠氮基6-脱氧-2,3-二-O-苯基氨基甲酸酯化)β-环糊精键合手性固定相的三种手性中心β-阻断剂(纳多洛尔)的液相色谱保留行为和对映体分离

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摘要

Nadolol, a β-blocker used in the management of hypertension and angina pectoris, has three chiral centers and is currently marketed as an equal mixture of its four stereoisomers. Enantiomeric separation of nadolol by high-performance liquid chromatography was studied on a column packed with novel heptakis (6-azido-6-deoxy-2, 3-di-O-phenylcarbamolyted) β-cyclodextrin bonded chiral stationary phase. The retention behavior and resolution of nadolol enantiomers were investigated and discussed with respect to the mobile phase composition and flow rate, pH, ionic strength, and temperature. The optimal separation condition was found; the mobile phase contained 80% buffer solution (1% triethylamine acetate, pH 5.5) and 20% methanol with 0.3 m/min mobile phase flow rate at a temperature of 20 ℃. At the optimal conditions, resolution of three stereoisomers of nadolol was obtained with a complete separation of the most active enantiomer, (RSR)-nadolol. Thermodynamic properties including enthalpy and entropy change of binding to the CSP for the enantiomeric separation were also determined.
机译:Nadolol是一种用于治疗高血压和心绞痛的β受体阻滞剂,具有三个手性中心,目前以其四种立体异构体的均等混合物形式销售。在装有新型庚基(6-叠氮基6-脱氧-2,3-二-O-苯基氨基甲酸酯化)β-环糊精键合的手性固定相的色谱柱上研究了高效液相色谱法对萘二酚的对映体分离。就流动相组成和流速,pH,离子强度和温度,研究和讨论了纳多洛尔对映体的保留行为和拆分。找到了最佳分离条件;流动相在20℃的温度下含有80%的缓冲溶液(1%乙酸三乙胺,pH 5.5)和20%的甲醇,流动相流速为0.3 m / min。在最佳条件下,通过完全分离最具活性的对映异构体(RSR)-纳多洛尔,可以获得纳多洛尔的三种立体异构体的分离度。还确定了对映体分离的热力学性质,包括与CSP结合的焓和熵变。

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