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胆汁酸及其氧代衍生物在药代动力学性质表征和计算机辅助药物代谢动力学/药物效应动力学(ADME)建模中的保留数据。

Retention data of bile acids and their oxo derivatives in characterization of pharmacokinetic properties and in silico ADME modeling.

作者信息

Trifunović Jovana, Borčić Vladan, Vukmirović Saša, Kon Svetlana Goločorbin, Mikov Momir

机构信息

Department of Pharmacology, Toxicology and Clinical Pharmacology, Medical Faculty, University of Novi Sad, Hajduk Veljkova 3, 21000 Novi Sad, Serbia.

Department of Pharmacology, Toxicology and Clinical Pharmacology, Medical Faculty, University of Novi Sad, Hajduk Veljkova 3, 21000 Novi Sad, Serbia.

出版信息

Eur J Pharm Sci. 2016 Sep 20;92:194-202. doi: 10.1016/j.ejps.2016.07.011. Epub 2016 Jul 14.

Abstract

PURPOSE

Information on ADME properties of examined bile acids and their oxo derivatives are scarce, although the interest for bile acids and their use in nanochemistry and macromolecular chemistry is increasing. The purpose of this research was to evaluate the lipophilicity, a crucial physicochemical parameter for describing ADME properties of selected bile acids and their oxo derivatives, and to compare two approaches: experimentally determined hydrophobicity parameters and calculated logP values.

METHODS

Commercially available bile acids - deoxycholic, chenodeoxycholic, hyodeoxycholic and ursodeoxycholic acid were used to synthesize oxo derivatives. Lipophilicity was evaluated in two solvent systems: toluene/ethanol and toluene/butanol. Retention parameters were acquired by normal-phase TLC. The correlations between calculated logP values obtained using five different software and experimentally determined hydrophobicity parameters (RM(0)(tol/eth), RM(0)(tol/but), b(tol/eth) and b(tol/but)) were examined.

RESULTS

Correlation analysis confirmed significant dependence between experimental RM(0) values and software calculated parameters. Results suggest satisfactory intestinal absorption after oral administration for all of the examined compounds as well as low volumes of distribution, and high affinity for binding with plasma proteins. Penetration through blood-brain barrier and skin is not satisfactory. All of the examined compounds show high affinity for binding with G-protein coupled receptors and consequently inhibition of ionic channels. Results also suggest possible binding with nuclear receptors.

CONCLUSIONS

Established lipophilicity testing model of studied compounds showed excellent predictive ability and might represent significant tool in development of relations between chromatographic behavior and ADME properties. Compounds 3α-hydroxy-7,12-dioxo-5β-cholanoic and 12α-hydroxy-3,7-dioxo-5β-cholanoic acid might be the most suitable candidates for further development studies (satisfactory pharmacokinetic properties and lowest haemolytic potential) followed by 3α-hydroxy-12-oxo-5β-cholanoic acid and 3α-hydroxy-7-oxo-5β-cholanoic acid (slightly higher haemolytic potential, but better ligand properties).

摘要

目的

尽管对胆汁酸及其在纳米化学和大分子化学中的应用兴趣日益增加,但关于所研究胆汁酸及其氧代衍生物的吸收、分布、代谢和排泄(ADME)特性的信息却很少。本研究的目的是评估亲脂性(描述所选胆汁酸及其氧代衍生物ADME特性的关键物理化学参数),并比较两种方法:实验测定的疏水性参数和计算的logP值。

方法

使用市售胆汁酸——脱氧胆酸、鹅去氧胆酸、猪去氧胆酸和熊去氧胆酸合成氧代衍生物。在两种溶剂体系中评估亲脂性:甲苯/乙醇和甲苯/丁醇。通过正相薄层色谱法获得保留参数。研究了使用五种不同软件获得的计算logP值与实验测定的疏水性参数(RM(0)(tol/eth)、RM(0)(tol/but)、b(tol/eth)和b(tol/but))之间的相关性。

结果

相关性分析证实了实验RM(0)值与软件计算参数之间存在显著相关性。结果表明,所有受试化合物口服给药后肠道吸收良好,分布容积低,与血浆蛋白结合亲和力高。通过血脑屏障和皮肤的渗透不理想。所有受试化合物与G蛋白偶联受体结合亲和力高,因此抑制离子通道。结果还表明可能与核受体结合。

结论

所建立的受试化合物亲脂性测试模型显示出优异的预测能力,可能是建立色谱行为与ADME特性之间关系的重要工具。3α-羟基-7,12-二氧代-5β-胆烷酸和12α-羟基-3,7-二氧代-5β-胆烷酸可能是进一步开发研究的最合适候选物(具有良好的药代动力学特性和最低的溶血潜力),其次是3α-羟基-12-氧代-5β-胆烷酸和3α-羟基-7-氧代-5β-胆烷酸(溶血潜力略高,但配体特性更好)。

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