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Self-association of sodium isoursodeoxycholate and sodium isohenodeoxycholate in water

机译:自我关联的Isoursodoxycholate和水中的异卤氧胆酸钠

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摘要

Bile salts (BS) form hydrophobic Small's primary micelles at concentrations above the critical micelle concentration (CMC), while at concentrations above 3CMC they form secondary micelles (by the association of primary micelles via H-bonds). In this paper the self-associations of the anions of isohenodeoxycholic acid (3-epimer of henodeoxycholic acid, ICD) and the anions of isoursodeoxycholic acid (3-epimer of ursodeoxycholic acid, IUD) are examined, since the thermodynamic parameters of their self-association have not yet been published. Forming of IUD aggregates with two or three building units is slightly more favorable via a sides of steroid skeletons, regarding hydrophobicity, while regarding steric repulsive interactions it is more favorable to associate via beta sides. Due to this, IUD in the vicinity of the CMC can form primary micelles by association of IUD particles both from the convex side and from the concave side of the steroid ring system. Therefore, IUD is significantly more prone to initial micellization than bile salt derivatives whose steroidal skeletons contain equatorially oriented OH groups.
机译:胆汁盐(BS)以浓度高于临界胶束浓度(CMC)的浓度形成疏水性小胶束,同时以高于3cmc以上的浓度,它们形成二级胶束(通过H键的初级胶束相关)。在本文中,研究了异霍诺氧胆酸的阴离子的自我关联(HenodeOxycholic酸,ICD)和异脱氧胆酸的阴离子(熊科酸核酸,IUD的3分)的阴离子,因为它们的自我热力学参数协会尚未发布。在疏水性的同时,通过类固醇骨架的侧面形成具有两种或三个构建单元的IUD聚集体,同时在空间排斥相互作用的同时,更有利于通过β侧缔合。由此,在CMC附近的IUD可以通过从凸面和类固醇环系统的凹面和凹入侧的渗透颗粒的关联形成初级胶束。因此,IUD显着易于初始胶束化,其穗状盐衍生物甾体骨架含有均衡的OH基团。

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