Bioactive Molecules Research Laboratory, Faculty of Sciences, Lebanese University, Lebanon; Univ Lyon, Université Claude Bernard Lyon 1, CNRS, LAGEPP UMR 5007, France.
Bioactive Molecules Research Laboratory, Faculty of Sciences, Lebanese University, Lebanon.
Int J Pharm. 2021 Dec 15;610:121232. doi: 10.1016/j.ijpharm.2021.121232. Epub 2021 Oct 28.
Since the membrane-related processes represent an integral part of the biological activities of drugs, their effect on the membrane dynamics is actually considered. In this study, we investigated the effect of pentacyclic triterpenes (TTPs), oleanolic acid (OA) and erythrodiol (ER), on the fluidity and permeability of liposomes membranes differing by their cholesterol content. All liposomes were prepared by reverse phase evaporation technique (REV). Spin-labeled liposomes exposed or not to TTPs were used for fluidity studies by using 5- and 16-doxyl stearic acids (DSA). TTPs-loaded liposomes (phospholipid:cholesterol of 1:1), and preformed vesicles exposed to TTPs were used for permeability studies by monitoring the release of sulforhodamine B (SRB) at 37 °C. The apparent release constants of SRB were determined by Higuchi model based on a biphasic curve shape (0-10 h; 10-48 h). TTPs-loaded liposomes were characterized for their size and homogeneity. Results showed that ER increased the membrane fluidity at the upper region of the membrane while the both TTPs produced a condensing effect at the deeper region of the membrane. The membrane composition was a critical parameter modulating the effect of TTPs on the membrane permeability. Also, this study consolidated the fact that a fluidizing membrane agent is not necessarily a permeabilizing-membrane compound.
由于膜相关过程是药物生物活性的一个组成部分,因此实际上考虑了它们对膜动力学的影响。在这项研究中,我们研究了五环三萜(TTP)、齐墩果酸(OA)和赤醇(ER)对脂质体膜流动性和通透性的影响,这些脂质体的胆固醇含量不同。所有的脂质体都是通过反相蒸发技术(REV)制备的。使用 5-和 16-二氧代硬脂酸(DSA)对暴露于 TTP 或未暴露于 TTP 的自旋标记脂质体进行流动性研究。用 TTP 负载的脂质体(磷脂:胆固醇为 1:1)和暴露于 TTP 的预形成囊泡用于通过监测 37°C 时磺基罗丹明 B(SRB)的释放来进行渗透性研究。根据双相曲线形状(0-10 h;10-48 h),通过 Higuchi 模型确定 SRB 的表观释放常数。TTP 负载的脂质体的大小和均一性进行了表征。结果表明,ER 增加了膜的流动性,而两种 TTP 都在膜的更深区域产生了凝聚效应。膜组成是调节 TTP 对膜通透性影响的关键参数。此外,这项研究证实了一个事实,即具有流动性的膜剂不一定是可渗透膜的化合物。