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阳离子药物与脂质体的相互作用。

Interaction of cationic drugs with liposomes.

机构信息

Department of Chemical Engineering, University of Florida, Gainesville, Florida 32611, USA.

出版信息

Langmuir. 2009 Oct 20;25(20):12056-65. doi: 10.1021/la901644h.

Abstract

Interactions between cationic drugs and anionic liposomes were studied by measuring binding of drugs and the effect of binding on liposome permeability. The measurements were analyzed in the context of a continuum model based on electrostatic interactions and a Langmuir isotherm. Experiments and modeling indicate that, although electrostatic interactions are important, the fraction of drug sequestered in the double-layer is negligible. The majority of drug enters the bilayer with the charged regions interacting with the charged lipid head groups and the lipophilic regions associated with the bilayer. The partitioning of the drug can be described by a Langmuir isotherm with the electrostatic interactions increasing the sublayer concentration of the drug. The binding isotherms are similar for all tricyclic antidepressants (TCA). Bupivacaine (BUP) binds significantly less compared to TCA because its structure is such that the charged region has minimal interactions with the lipid heads once the BUP molecule partitions inside the bilayer. Conversely, the TCAs are linear with distinct hydrophilic and lipophilic regions, allowing the lipophilic regions to lie inside the bilayer and the hydrophilic regions to protrude out. This conformation maximizes the permeability of the bilayer, leading to an increased release of a hydrophilic fluorescent dye from liposomes.

摘要

阳离子药物与阴离子脂质体的相互作用通过测量药物的结合以及结合对脂质体通透性的影响来研究。这些测量结果是在基于静电相互作用和朗缪尔等温线的连续体模型的背景下进行分析的。实验和建模表明,尽管静电相互作用很重要,但被双层隔离的药物的分数可以忽略不计。大部分药物与带电荷的区域与带电荷的脂质头部基团相互作用,并与双层结合的亲脂区域一起进入双层。药物的分配可以用朗缪尔等温线来描述,其中静电相互作用增加了药物的亚层浓度。所有三环抗抑郁药(TCA)的结合等温线都相似。与 TCA 相比,布比卡因(BUP)的结合量明显减少,因为其结构使得一旦 BUP 分子在双层内分配,带电荷的区域与脂质头部的相互作用最小。相反,TCAs 是线性的,具有明显的亲水区和疏水区,允许疏水区位于双层内,亲水区突出。这种构象使双层的通透性最大化,导致亲水性荧光染料从脂质体中的释放增加。

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