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首页> 外文期刊>Analytical and bioanalytical chemistry >Interaction of native alpha-cyclodextrin, beta-cyclodextrin and gamma-cyclodextrin and their hydroxypropyl derivatives with selected organic low molecular mass compounds at elevated and subambient temperature under RP-HPLC conditions
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Interaction of native alpha-cyclodextrin, beta-cyclodextrin and gamma-cyclodextrin and their hydroxypropyl derivatives with selected organic low molecular mass compounds at elevated and subambient temperature under RP-HPLC conditions

机译:RP-HPLC条件下在升高的和低于室温的温度下,天然α-环糊精,β-环糊精和γ-环糊精及其羟丙基衍生物与选定的有机低分子量化合物的相互作用

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摘要

The main focus of this study was to explore the capability of native alpha-cyclodextrin, beta-cyclodextrin and gamma-cyclodextrin and their hydroxypropyl derivatives for host-guest interaction with 7,8-dimethoxyflavone, selected steroids (estetrol, estriol, estradiol, estrone, testosterone, cortisone, hydrocortisone, progesterone and 17 alpha-hydroxyprogesterone) and polycyclic aromatic hydrocarbons (toluene, naphthalene, 1,8-dimethylnaphthalene, 1-acenaphthenol, acenaphthylene and acenaphthene) under reversed-phase liquid-chromatography conditions. The study revealed that native cyclodextrins interact more efficiently with the analytes investigated than do their hydroxypropyl counterparts. In the low-temperature region, enormously high ratios were observed for polycyclic aromatic hydrocarbons, particularly 1,8-dimethylnaphthalene, acenaphthene and acenaphthylene chromatographed on a beta-cyclodextrin-modified mobile phase. In such a case, the retention times of the polycyclic aromatic hydrocarbons were strongly reduced (e.g. from 127 to 1.2 min for 1,8-dimethylnaphthalene) and were close to the hold-up time of the high-performance liquid chromatography (HPLC) system (0.7 min). Moreover, chiral separation of 1-acenaphthenol optical isomers was observed and the elution order of the enantiomers was determined. Within the steroids group, strong interaction was observed for estradiol and testosterone. The results of cluster analysis indicate that beta-cyclodextrin as well as gamma-cyclodextrin and its hydroxypropyl derivative can be most effective mobile-phase additives under reversed-phase HPLC conditions for 3D-shape-recognition-driven separation, performed at subambient and elevated temperatures, respectively.
机译:这项研究的主要重点是探索天然的α-环糊精,β-环糊精和γ-环糊精及其羟丙基衍生物与7,8-二甲氧基黄酮,选定的类固醇(雌甾醇,雌三醇,雌二醇,雌酮)之间的客体相互作用,反相液相色谱条件下,包括睾丸激素,可的松,氢化可的松,孕酮和17α-羟基孕酮)和多环芳香烃(甲苯,萘,1,8-二甲基萘,1-ac烯,ac和and)。研究表明,天然环糊精与所研究的被分析物的相互作用比其羟丙基对应物更有效。在低温区域,观察到在β-环糊精改性的流动相上色谱分离的多环芳烃,特别是1,8-二甲基萘,和and的比率非常高。在这种情况下,多环芳烃的保留时间大大缩短(例如,对于1,8-二甲基萘从127分钟降至1.2分钟),并且接近高效液相色谱(HPLC)系统的保留时间(0.7分钟)。此外,观察到1-ac烯醇光学异构体的手性分离,并确定对映体的洗脱顺序。在类固醇组中,观察到雌二醇和睾丸激素的强烈相互作用。聚类分析结果表明,β-环糊精以及γ-环糊精及其羟丙基衍生物在反相HPLC条件下,在环境温度较高和高温下进行3D形状识别驱动的分离中,可能是最有效的流动相添加剂。 , 分别。

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