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Novel Findings about Double-Loaded Curcumin-in-HPβcyclodextrin-in Liposomes: Effects on the Lipid Bilayer and Drug Release

机译:脂质体中双倍于姜黄素的HPβ-环糊精的新发现:对脂质双层和药物释放的影响

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摘要

In this study, the encapsulation of curcumin (Cur) in “drug-in-cyclodextrin-in-liposomes (DCL)” by following the double-loading technique (DL) was proposed, giving rise to DCL–DL. The aim was to analyze the effect of cyclodextrin (CD) on the physicochemical, stability, and drug-release properties of liposomes. After selecting didodecyldimethylammonium bromide (DDAB) as the cationic lipid, DCL–DL was formulated by adding 2-hydroxypropyl-α/β/γ-CD (HPβCD)–Cur complexes into the aqueous phase. A competitive effect of cholesterol (Cho) for the CD cavity was found, so cholesteryl hemisuccinate (Chems) was used. The optimal composition of the DCL–DL bilayer was obtained by applying Taguchi methodology and regression analysis. Vesicles showed a lower drug encapsulation efficiency compared to conventional liposomes (CL) and CL containing HPβCD in the aqueous phase. However, the presence of HPβCD significantly increased vesicle deformability and Cur antioxidant activity over time. In addition, drug release profiles showed a sustained release after an initial burst effect, fitting to the Korsmeyer-Peppas kinetic model. Moreover, a direct correlation between the area under the curve (AUC) of dissolution profiles and flexibility of liposomes was obtained. It can be concluded that these “drug-in-cyclodextrin-in-deformable” liposomes in the presence of HPβCD may be a promising carrier for increasing the entrapment efficiency and stability of Cur without compromising the integrity of the liposome bilayer.
机译:在这项研究中,提出了通过双重加载技术(DL)将姜黄素(Cur)包裹在“药物在环糊精中的脂质体(DCL)”中的方法,从而产生了DCL–DL。目的是分析环糊精(CD)对脂质体的物理化学,稳定性和药物释放特性的影响。选择十二烷基二甲基溴化铵(DDAB)作为阳离子脂质后,通过在水相中添加2-羟丙基-α/β/γ-CD(HPβCD)-Cur复合物来配制DCL-DL。发现胆固醇(Cho)对CD腔具有竞争作用,因此使用了胆固醇琥珀酸半琥珀酸酯(Chems)。通过使用Taguchi方法和回归分析获得DCL-DL双层的最佳组成。与常规脂质体(CL)和在水相中包含HPβCD的CL相比,囊泡显示出较低的药物包封效率。然而,随着时间的流逝,HPβCD的存在显着增加了囊泡的可变形性和Cur抗氧化活性。另外,药物释放曲线显示出在最初的爆发效应后持续释放,符合Korsmeyer-Peppas动力学模型。而且,获得了溶出曲线的曲线下面积(AUC)与脂质体的柔韧性之间的直接相关性。可以得出结论,在存在HPβCD的情况下,这些“可在环糊精中降解的药物”脂质体可能是一种有前途的载体,可以提高Cur的包封效率和稳定性,而不会损害脂质体双层的完整性。

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