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首页> 外文期刊>Electrophoresis: The Official Journal of the International Electrophoresis Society >Chiral selectivity of guanosine media in capillary electrophoresis.
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Chiral selectivity of guanosine media in capillary electrophoresis.

机译:毛细管电泳中鸟苷介质的手性选择性。

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摘要

Gels formed by self-association of monomeric guanosine compounds join numerous other agents such as cyclodextrins, crown ethers, chiral surfactants, antibiotics, proteins, and polysaccharides for chiral separations. Guanosine gels (G-gels) are self-assembled networks of hydrogen-bonded tetrads formed by guanosine nucleotides and their derivatives. The tetrads stack upon themselves to form columnar, helical aggregates that are stabilized by pi-pi interactions and centrally located cations. Previous work showed the effectiveness of G-gels formed by guanosine-5'-monophophate for separation of the enantiomers of the cationic drug propranolol using capillary electrophoresis. Subsequently, it was found that not all chiral compounds could be resolved into their enantiomers, leading us to investigate in this work the structural features that appear to be correlated to enantiomerically selective interactions of chiral compounds with G-gels. For those compounds (anionic 1,1'-binaphthyl-2,2'-diyl hydrogen phosphate and zwitterionic tryptophan) for which enantiomeric resolution was achieved, the effects of experimental conditions and G-gel composition were examined. For other compounds with no net charge (hydrobenzoin and zwitterionic amino acids and derivatives), the migration times were used as an indicator of the extent of interaction with the G-gel run buffer. It was found that the extent of interaction alone does not determine the chiral selectivity of the G-gel, indicating that the mechanism of chiral separation involves particular structural characteristics of the chiral compounds.
机译:通过单体鸟苷化合物的自缔合形成的凝胶与许多其他试剂结合,例如环糊精,冠醚,手性表面活性剂,抗生素,蛋白质和用于手性分离的多糖。鸟苷凝胶(G-gels)是由鸟苷核苷酸及其衍生物形成的氢键四联体的自组装网络。四分体自身堆叠形成柱状螺旋聚集体,这些聚集体通过pi-pi相互作用和位于中心的阳离子而稳定。先前的工作显示了鸟苷5'-单向鸟苷形成的G-凝胶通过毛细管电泳分离阳离子药物普萘洛尔的对映体的有效性。随后,发现并非所有的手性化合物都可以拆分为对映体,这使我们在这项工作中研究了似乎与手性化合物与G凝胶的对映体选择性相互作用相关的结构特征。对于实现对映体拆分的那些化合物(阴离子的1,1'-联萘-2,2'-二烷基磷酸氢盐和两性离子色氨酸),研究了实验条件和G-凝胶组成的影响。对于其他没有净电荷的化合物(氢安息香和两性离子氨基酸及其衍生物),迁移时间用作与G凝胶电泳缓冲液相互作用程度的指标。已经发现,单独的相互作用程度并不能决定G-凝胶的手性选择性,这表明手性分离的机理涉及手性化合物的特定结构特征。

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