首页> 外文期刊>Electrophoresis: The Official Journal of the International Electrophoresis Society >Separation of (Z)- and (E)-isomers of thioxanthene and dibenz[b,e]oxepin derivatives with calixarenes and resorcinarenes as additives in nonaqueous capillary electrophoresis
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Separation of (Z)- and (E)-isomers of thioxanthene and dibenz[b,e]oxepin derivatives with calixarenes and resorcinarenes as additives in nonaqueous capillary electrophoresis

机译:非水毛细管电泳中以杯芳烃和间苯二芳烃为添加剂分离噻吨蒽和苯并[b,e]氧杂环丁烷衍生物的(Z)-和(E)-异构体

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Five acidic calix[4]arenes with carboxylic or sulfonic groups at either the upper or lower rim of the cavity and one resorc[4]arene were investigated to separate three thioxanthenes (flupentixol, clopenthixol, chlorprothixene) and a dibenz[be]oxepin derivative (doxepin) with cis-/trans-isomerism by nonaqueous capillary electrophoresis (NACE). Partial filling of the capillary with the UV-absorbing selectors led to a low detection limit and an advantageous signal-to-noise ratio (S/N). A sufficient electrophoretic mobility of the calixarenes towards the anode was necessary to outweigh the oppositely directed electroosmotic flow (EOF). This depended; from the functional groups, the dissociation and the hydrodynamic radius of the cyclophanes. In contrast, the resorcinarene was useable only by addition of sodium dodecyl sulfate (SDS) because only the complex of the two selectors had an anodic apparent electrophoretic mobility. p-Sulfonyl-calix[4]arene (ss-a1) was the most capable selector for all E/Z-isomers with maximal a-values ranging from 1.056 for doxepin to 1.224 for chlorprothixene. This was due to the sufficient migration in reversed direction to the EOF even at low pH* values of 3.0. Otherwise, electrostatic as well as hydrophobic interactions with the positively charged isomers seem to contribute to a superior recognition. Increasing the concentration up to 15 mm ss-a1 and using acidic media (pH* 5.0) led to high separation efficiency. Changing the organic solvent provides a powerful tool to improve selectivity with N,N-dimethylformamide-methanol (DMF-MeOH)-mixtures for thioxanthenes. Further electrophoretic parameters were optimized, such as the concentration of the electrolytes, the addition of SDS, the kind of electrolytes and the voltage. Distinct differences in selectivities were found between the derivatives with thioxanthene and dibenzo[b,e]oxepin ring system, respectively. Further, the different basic side chain was responsible for the different selectivity at higher pH* values. In contrast, the substitution at position 2 of the thioxanthenes played a secondary role. Based on the studies of single parameters a method for a simultaneous separation of the four pairs of isomers within 13 min was developed. [References: 47]
机译:研究了五种在空腔上缘或下缘带有羧基或磺酸基的酸性杯[4]芳烃和一个间苯二酚[4]芳烃,以分离三种噻吨酮(氟喷噻醇,氯苯酚,氯噻吩烯)和二苯并[be]氧杂庚烯衍生物非水毛细管电泳(NACE)具有顺式/反式异构的多西平(doxepin)。用吸收紫外线的选择器部分填充毛细管导致较低的检测限和有利的信噪比(S / N)。杯盖芳烃向阳极的足够的电泳迁移率对抵消相反方向的电渗流(EOF)来说是必需的。这取决于;环烷的官能团,解离和流体力学半径相反,由于仅两个选择剂的复合物具有阳极表观电泳迁移率,因此间苯二芳烃仅可通过添加十二烷基硫酸钠(SDS)使用。对磺酰基-杯[4]芳烃(ss-a1)是所有E / Z异构体最有力的选择者,其最大a值范围从多塞平的1.056到氯噻吨的1.224。这是由于即使在低pH *值为3.0时,也有足够的反方向迁移至EOF。否则,与带正电异构体的静电以及疏水性相互作用似乎有助于提高识别度。将浓度提高到15 mm ss-a1并使用酸性介质(pH * 5.0)可以提高分离效率。改变有机溶剂提供了一种强大的工具,可提高N,N-二甲基甲酰胺-甲醇(DMF-MeOH)-混合物对噻吨类化合物的选择性。进一步优化了电泳参数,例如电解质的浓度,SDS的添加,电解质的种类和电压。分别在具有噻吨蒽和二苯并[b,e] oxepin环系统的衍生物之间发现了不同的选择性差异。此外,在较高的pH *值下,不同的碱性侧链负责不同的选择性。相反,噻吨酮的2位取代起次要作用。基于对单个参数的研究,开发了一种在13分钟内同时分离四对异构体的方法。 [参考:47]

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