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首页> 外文期刊>Journal of separation science. >Complexation of tauro- and glyco-conjugated bile salts with α-cyclodextrin and hydroxypropyl-α-cyclodextrin studied by affinity capillary electrophoresis and molecular modelling
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Complexation of tauro- and glyco-conjugated bile salts with α-cyclodextrin and hydroxypropyl-α-cyclodextrin studied by affinity capillary electrophoresis and molecular modelling

机译:亲和毛细管电泳和分子模拟研究牛磺酸和糖共轭胆汁盐与α-环糊精和羟丙基-α-环糊精的络合

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摘要

The interaction of the bile salts taurocholate, taurodeoxycholate, taurochenodeoxycholate, glycocholate, glycodeoxycholate, and glycochenodeoxycholate present in man, dog, and rat with α-cyclodextrin and 2-hydroxypropyl-α-cyclodextrin was investigated by mobility shift affinity capillary electrophoresis. The cyclodextrins are applied as excipients for solubilisation of drug substances with poor aqueous solubility. Accurate determination of stability constants is challenging for weak analyte-ligand interactions such as the conjugated bile salt α-cyclodextrin interactions. A new approach for correction of medium effects due to the high additive concentrations in the background electrolyte was introduced. The use of prostaglandin A1 as an interacting marker molecule offered a more satisfactory approach for correction than the commonly employed methods based on viscosity or current ratios. The interacting marker was chosen over a non-interacting marker to avoid the difficult validation of the non-interacting properties. The investigated bile salts all interacted with α-cyclodextrin and 2-hydroxypropyl-α-cyclodextrin. Stability constants ranging from 14 to 95 M~(-1) were obtained with slightly higher affinities toward the substituted cyclodextrin. Molecular modelling demonstrated that the interaction between the two species involves the side chain of the bile salt. All together, these results indicate minor bile salt-mediated displacement of substances from α-cyclodextrin complexes in the small intestine.
机译:通过迁移率迁移亲和毛细管电泳研究了存在于人,狗和大鼠中的胆汁盐牛磺胆酸盐,牛磺去氧胆酸盐,牛磺去氧胆酸盐,糖胆酸盐,糖脱氧胆酸盐和糖醛去氧胆酸盐与α-环糊精和2-羟丙基-α-环糊精的相互作用。环糊精用作赋形剂用于溶解水溶性差的药物。对于弱的分析物-配体相互作用(例如共轭胆汁盐α-环糊精相互作用),准确确定稳定常数具有挑战性。引入了一种新的方法来校正由于背景电解质中的高添加剂浓度引起的介质效应。与基于粘度或电流比的常用方法相比,使用前列腺素A1作为相互作用的标记分子提供了更令人满意的校正方法。选择相互作用标记而不是非相互作用标记,以避免难以验证非相互作用特性。研究的胆汁盐均与α-环糊精和2-羟丙基-α-环糊精相互作用。获得的稳定常数范围为14至95 M〜(-1),对取代的环糊精的亲和力略高。分子建模表明两种物质之间的相互作用涉及胆盐的侧链。总之,这些结果表明小肠中胆汁盐介导的α-环糊精复合物物质的置换。

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