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毛细管电泳法研究胆盐对普萘洛尔进入脂质体的分配影响。

Effects of bile salts on propranolol distribution into liposomes studied by capillary electrophoresis.

机构信息

School of Pharmacy, University of Otago, Dunedin, New Zealand.

出版信息

J Pharm Biomed Anal. 2011 Nov 1;56(3):553-9. doi: 10.1016/j.jpba.2011.06.020. Epub 2011 Jul 2.

Abstract

The objective of this study was to study the effect of four different bile salts, cholate (C), deoxycholate (DC), taurocholate (TC), monoketocholate (MKC), on the membrane binding of a cationic model drug, propranolol, using capillary electrophoresis. The apparent distribution coefficient of propranolol in a buffer/liposome system, in the absence and presence of various concentrations of the bile salts, was measured using capillary electrophoresis frontal analysis. At bile salt concentrations which did not disrupt the liposomes, the bile salts increased the apparent distribution coefficient of propranolol in a concentration-dependent manner, to various extents (DC>C>TC>MKC). The mechanisms for these increases were inferred from studies of ion pairing between bile salts and propranolol using mobility shift affinity capillary electrophoresis and from zeta potential measurements. The bile salts ion-paired with propranolol to different extents as indicated by the estimated complexation constants (K range: 30-58 M(-1)). This was found to have a minor effect on the membrane distribution of propranolol only. The major effect is proposed to be due to the insertion of bile salt into the liposomal membranes leading to a more negatively charged membrane surface thereby providing stronger electrostatic interactions with the positively charged propranolol.

摘要

本研究旨在使用毛细管电泳研究四种不同的胆汁盐(胆酸盐(C)、脱氧胆酸盐(DC)、牛磺胆酸盐(TC)、单去氧胆酸盐(MKC))对阳离子模型药物普萘洛尔的膜结合的影响。使用毛细管电泳前沿分析,在不存在和存在各种浓度的胆汁盐的情况下,测量了普萘洛尔在缓冲液/脂质体系统中的表观分配系数。在不破坏脂质体的胆汁盐浓度下,胆汁盐以浓度依赖的方式不同程度地增加了普萘洛尔的表观分配系数(DC>C>TC>MKC)。从使用迁移率偏移亲和毛细管电泳研究胆汁盐与普萘洛尔之间的离子对以及从 ζ 电位测量推断出这些增加的机制。胆汁盐与普萘洛尔以不同程度的离子配对,如估计的络合常数(K 范围:30-58 M(-1))所示。这仅对普萘洛尔的膜分布产生微小影响。主要影响据推测是由于胆汁盐插入脂质体膜中,导致带负电荷的膜表面,从而与带正电荷的普萘洛尔提供更强的静电相互作用。

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