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类固醇与桥联双(β-环糊精)之间相互作用的分子识别热力学及结构解析

Molecular recognition thermodynamics and structural elucidation of interactions between steroids and bridged bis(beta-cyclodextrin)s.

作者信息

Liu Yu, Yang Ying-Wei, Yang En-Cui, Guan Xu-Dong

机构信息

Department of Chemistry, State Key Laboratory of Elemento-Organic Chemistry, Nankai University, Tianjin 300071, P. R. China.

出版信息

J Org Chem. 2004 Oct 1;69(20):6590-602. doi: 10.1021/jo049143k.

Abstract

A series of bridged bis(beta-cyclodextrin(CD))s (2-7) were synthesized, i.e., bridged bis(beta-CD)s 2 and 3 bearing binaphthyl or biquinoline tethers and bridged bis(beta-CD)s 4-7 possessing dithiobis(benzoyl) tether, and their complex stability constants (KS), enthalpy (DeltaH degrees), and entropy changes (DeltaS degrees) for the 1:2 inclusion complexation with representative steroids, deoxycholate, cholate, glycocholate, and taurocholate, have been determined in an aqueous phosphate buffer solution of pH 7.20 at 298.15 K by means of titration microcalorimetry. The original conformations of bridged bis(beta-cyclodextrin)s were investigated by circular dichroism and 1H ROESY spectroscopy. Structures of the inclusion complexes between steroids and bridged bis(beta-CD)s in solution were elucidated by 2D NMR experiments, indicating that anionic groups of two steroid molecules penetrate, respectively, into the two hydrophobic CD cavities in one 6,6'-bridged bis(beta-CD) molecule from the secondary rim to give a 1:2 binding mode upon inclusion complexation. The results obtained from titration microcalorimetry and 2D NMR experiments jointly demonstrate that bridged bis(beta-CD)s 2, 3 and 5-7 tethered by protonated amino group possessing different substituted groups can enhance not only the molecular binding ability toward steroids by electrostatic interaction but also molecular selectivity. Thermodynamically, the resulting 1:2 bis(beta-CD)-steroid complexes are formed by an enthalpy-driven process, accompanied by smaller entropy loss. The increased complex stability mainly results from enthalpy gain, accompanied by large conformational change and extensive desolvation effects for the 1:2 inclusion complexation between bis(beta-CD)s and steroids.

摘要

合成了一系列桥连双(β-环糊精(CD))(2 - 7),即带有联萘基或联喹啉连接基的桥连双(β-CD)2和3,以及具有二硫代双(苯甲酰基)连接基的桥连双(β-CD)4 - 7。通过滴定微量热法在298.15 K、pH 7.20的磷酸盐水溶液中测定了它们与代表性甾体、脱氧胆酸盐、胆酸盐、甘氨胆酸盐和牛磺胆酸盐形成1:2包合配合物的配合稳定常数(KS)、焓变(ΔH°)和熵变(ΔS°)。通过圆二色光谱和1H ROESY光谱研究了桥连双(β-环糊精)的原始构象。通过二维核磁共振实验阐明了甾体与溶液中桥连双(β-CD)之间包合配合物的结构,表明两个甾体分子的阴离子基团分别从二级边缘进入一个6,6'-桥连双(β-CD)分子的两个疏水CD腔中,在形成包合配合物时呈现1:2的结合模式。滴定微量热法和二维核磁共振实验的结果共同表明,带有不同取代基的质子化氨基连接的桥连双(β-CD)2、3和5 - 7不仅可以通过静电相互作用增强对甾体的分子结合能力,还能提高分子选择性。从热力学角度看,生成的1:2双(β-CD)-甾体配合物是由焓驱动的过程形成的,伴随着较小的熵损失。配合物稳定性的增加主要源于焓的增加,同时在双(β-CD)与甾体形成1:2包合配合物时伴随着较大的构象变化和广泛的去溶剂化效应。

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