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首页> 外文期刊>Analytical chemistry >SEPARATION OF HYDROPHOBIC, POSITIVELY CHARGEABLE SUBSTANCES BY CAPILLARY ELECTROPHORESIS
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SEPARATION OF HYDROPHOBIC, POSITIVELY CHARGEABLE SUBSTANCES BY CAPILLARY ELECTROPHORESIS

机译:通过毛细管电泳分离疏水性正电荷的物质

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摘要

The electrokinetic separation behavior of positively chargeable substances with various hydrophobicities over the pH range 2-11 is described, using plain aqueous buffers, binary media with organic solvents, and systems with surfactants at concentrations between 0.0005 and 75 mM or other buffer additives. Examples studied include dextromethorphan, methadone, ketoconazole, itraconazole, amiodarone, and desethylamiodarone, compounds that play an important role in pharmacotherapy. Electrokinetic chromatography systems comprising dynamically formed micelles or ionic buffer additives that can form ion pairs with the solutes are shown to be unsuitable for the separation of highly hydrophobic, positively chargeable compounds, including the latter three drugs investigated. However, capillary zone electrophoresis (CZE) in binary systems with organic solvents (40-80%, v/v) at a buffer pH near or lower the solute's pK(a) values or CZE at low pH in the presence of an electrically neutral complexing agent, such as beta-cyclodextrin, can be employed effectively. Data presented illustrate that pK(a) values in binary systems with organic solvents that are more basic than water are smaller than those in aqueous media. Furthermore, somewhat less hydrophobic and positively chargeable compounds can be sufficiently dissolved in aqueous buffer at pH < pK(a) and can therefore be analyzed by CZE without any buffer additives.
机译:描述了使用普通水性缓冲液,具有有机溶剂的二元介质和浓度在0.0005至75 mM之间的表面活性剂或其他缓冲液添加剂在pH范围2-11范围内具有各种疏水性的带正电荷的物质的电动分离行为。研究的实例包括右美沙芬,美沙酮,酮康唑,伊曲康唑,胺碘酮和去乙基胺碘酮,它们在药物治疗中起重要作用。电动色谱系统包含动态形成的胶束或可以与溶质形成离子对的离子缓冲剂,已证明不适用于高疏水性,带正电荷的化合物的分离,包括后三种药物。然而,在电中性条件下,在缓冲液pH接近或降低溶质的pK(a)值或降低pH的情况下,在有机溶剂(40-80%,v / v)的二元系统中进行毛细管区带电泳(CZE)可以有效地使用络合剂,例如β-环糊精。所提供的数据表明,在二元系统中,有机溶剂比水更碱性的pK(a)值小于水性介质中的pK(a)值。此外,疏水性较小且带正电荷的化合物可以在pH K(a)下充分溶解在水性缓冲液中,因此无需任何缓冲液添加剂即可通过CZE进行分析。

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