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胆汁盐3和7-亚乙基衍生物的胶束化参数(数均、聚集数和临界胶束浓度):甾体骨架II的作用

Micellization parameters (number average, aggregation number and critical micellar concentration) of bile salt 3 and 7 ethylidene derivatives: Role of the steroidal skeleton II.

作者信息

Poša Mihalj, Bjedov Srđan, Škorić Dušan, Sakač Marija

机构信息

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

Department of Chemistry, Biochemistry and Environmental Protection, Faculty of Sciences, University of Novi Sad, Trg D. Obradovića 3, 21000 Novi Sad, Serbia.

出版信息

Biochim Biophys Acta. 2015 Jul;1850(7):1345-53. doi: 10.1016/j.bbagen.2015.03.010. Epub 2015 Apr 1.

Abstract

BACKGROUND

Bile salts are steroidal biosurfactants. Micellar systems of bile salts are not only important for solubilization of cholesterol, but they also interact with certain drugs thus changing their bioavailability.

METHODS

The number-average aggregation numbers (n¯) are determined using the Moroi-Matsuoka-Sugioka thermodynamic method. Critical micellar concentrations were determined by spectrofluorometric method using pyren and by surface tension measurements.

RESULTS

Micelles of ethylidene derivatives possess the following values for n¯: 7-Eth-D (n¯=11 (50 mM)-n¯=14.8 (100 mM)); 12-Ox-7-Eth-L (n¯≈8.8, without concentration dependence) and 7,12-diOx-3-Eth-Ch (n¯≈2.9, without concentration dependence). In the planes n¯-ln k and ln CMC-ln k derivative 7-Eth-D is outlier in respect to hydrophobic linear congeneric groups.

CONCLUSION

Gibbs energy of formation for 7-Eth-D anion micelles in addition to the Gibbs energy of hydrophobic interactions consists excess Gibbs energy (GE) from hydrogen bond formation between building blocks of micelles. Gibbs energy of formation for 7,12-diOx-3-Eth-Ch and 12-Ox-7-Eth-L anion micelle is determined by the Gibbs energy of hydrophobic interactions. Relative increase in hydrophobicity and aggregation number for ethylidene derivatives is larger when ethylidene group is introduced from the C7 lateral side of steroidal skeleton then it is when ethylidene group is on C3 carbon.

GENERAL SIGNIFICANCE

Position of outlier towards hydrophobic congeneric groups from n¯-ln k and ln CMC-ln k planes indicates the existence of excess Gibbs energy (GE) which is not of hydrophobic nature (formation of hydrogen bonds). For the bile salt micelles to have GE (formation of secondary micelles) it is necessary that steroidal skeleton possesses C3-α-(e)-OH and C12-α-(a)-OH groups.

摘要

背景

胆汁盐是甾体类生物表面活性剂。胆汁盐的胶束系统不仅对胆固醇的溶解很重要,而且它们还与某些药物相互作用,从而改变其生物利用度。

方法

使用Moroi-Matsuoka-Sugioka热力学方法测定数均聚集数((n))。通过使用芘的荧光分光光度法和表面张力测量来测定临界胶束浓度。

结果

亚乙基衍生物的胶束具有以下(n)值:7-乙基-D((n = 11)(50 mM)-(n = 14.8)(100 mM));12-氧代-7-乙基-L((n≈8.8),无浓度依赖性)和7,12-二氧代-3-乙基-Ch((n≈2.9),无浓度依赖性)。在(n)-ln (k)和ln CMC-ln (k)平面中,衍生物7-乙基-D相对于疏水性线性同系物基团是异常值。

结论

7-乙基-D阴离子胶束的形成吉布斯自由能除了疏水相互作用的吉布斯自由能外,还包括胶束结构单元之间氢键形成产生的过量吉布斯自由能((G_E))。7,12-二氧代-3-乙基-Ch和12-氧代-7-乙基-L阴离子胶束的形成吉布斯自由能由疏水相互作用的吉布斯自由能决定。当亚乙基从甾体骨架的C7侧引入时,亚乙基衍生物的疏水性和聚集数的相对增加比在C3碳上引入亚乙基时更大。

一般意义

从(n)-ln (k)和ln CMC-ln (k)平面来看,异常值相对于疏水同系物基团的位置表明存在非疏水性质的过量吉布斯自由能((G_E))(氢键的形成)。对于胆汁盐胶束要具有(G_E)(二级胶束的形成),甾体骨架必须具有C3-α-(e)-OH和C12-α-(a)-OH基团。

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