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钠鼠李酸盐衍生物(胆汁盐)胶束化中的结构-性质关系:甾核构象对疏水性和胶束形成模式的影响——模式识别和潜在的膜保护特性。

Structure-Property Relationships in Sodium Muricholate Derivative (Bile Salts) Micellization: The Effect of Conformation of Steroid Skeleton on Hydrophobicity and Micelle Formation-Pattern Recognition and Potential Membranoprotective Properties.

机构信息

Faculty of Medicine, Department of Pharmacy, University of Novi Sad , Hajduk Veljkova 3, 21000 Novi Sad, Serbia.

出版信息

Mol Pharm. 2017 Oct 2;14(10):3343-3355. doi: 10.1021/acs.molpharmaceut.7b00375. Epub 2017 Sep 13.

Abstract

It is known that β-muricholic acid anions prevent membrane toxicity of hydrophobic bile acids, which are being used in therapy for solubilization of the cholesterol type bile stone. Better knowledge of these derivative micelles is very important for understanding their physiological and pharmacological effects. β-Axial (a) oriented hydroxyl group from the steroid skeleton decreases the hydrophobic surface of the convex side of the steroid skeleton. Therefore, the critical micellization concentration (CMC) for steroid surfactants with β-a-OH group should increase, but in the case of OH groups of different orientations forming H-bonds in the hydrophobic phase of the micelle, it has the opposite effect; the CMC decreses, and aggregation is more favored. The set of muricholic acids (MCs) is composed by α-MC, β-MC, γ-MC, and ω-MC, where α-MC and β-MC have β-axial-OH groups. The aggregation numbers (n) are determined using the Moroi-Matsuoka-Sugioka thermodynamic method. CMC, enthalpy of demicellization, and ΔC are determined by isothermal titration calorimetry (ITC). This report pioneers in the study of MC derivatives micellization. Micelles of β-MC and γ-MC belong to the linear congeneric group (LCG) and their micelles above 85 mM have constant aggregation numbers n = 4-5. Micelles of α-MC and ω-MC are outliers in relation to the LCG, their aggregation number constantly increases; at 85 mM n = 6.8 (α-MC) and 6.5 (ω-MC). In micelles of derivatives β-MC and γ-MC, there is a low probability for the existence of hydrogen bonds. A micelle of α-MC probably has hydrogen bonds in its hydrophobic domain.

摘要

已知β-鼠胆酸阴离子可防止疏水性胆酸的膜毒性,这些胆酸正在被用于胆固醇型胆石的溶解治疗。更好地了解这些衍生物胶束对于理解它们的生理和药理作用非常重要。来自甾体骨架的β-轴向(a)取向的羟基基团降低了甾体骨架凸面的疏水性表面。因此,具有β-a-OH 基团的甾体表面活性剂的临界胶束浓度(CMC)应该增加,但在不同取向的 OH 基团在胶束的疏水区形成氢键的情况下,其作用相反;CMC 降低,聚集更有利。鼠胆酸(MC)集合由α-MC、β-MC、γ-MC 和 ω-MC 组成,其中α-MC 和 β-MC 具有β-轴向-OH 基团。使用 Moroi-Matsuoka-Sugioka 热力学方法确定聚集数(n)。CMC、去胶束化焓和ΔC 通过等温滴定微量热法(ITC)确定。本报告率先研究了 MC 衍生物的胶束化。β-MC 和 γ-MC 的胶束属于线性同源物组(LCG),其胶束在 85mM 以上时具有恒定的聚集数 n=4-5。α-MC 和 ω-MC 的胶束是 LCG 的异常值,其聚集数不断增加;在 85mM 时 n=6.8(α-MC)和 6.5(ω-MC)。在β-MC 和 γ-MC 的衍生物胶束中,氢键的存在可能性较低。α-MC 的胶束可能在其疏水域中存在氢键。

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