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Formulation of Bicelles Based on Lecithin-Nonionic Surfactant Mixtures

机译:基于卵磷脂 - 非离子表面活性剂混合物的双柠檬制剂

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摘要

Bicelles have been intensively studied for use as drug delivery carriers and in biological studies, but their preparation with low-cost materials and via a simple process would allow their use for other purposes as well. Herein, bicelles were prepared through a semi-spontaneous method using a mixture of hydrogenated soybean lecithin (SL) and a nonionic surfactant, polyoxyethylene cholesteryl ether (ChEO10), and then we investigated the effect of composition and temperature on the structure of bicelles, which is important to design tailored systems. As the fraction of ChEO10 (XC) was increased, a bimodal particle size distribution with a small particle size of several tens of nanometers and a large particle size of several hundred nanometers was obtained, and only small particles were observed when XC ≥ 0.6, suggesting the formation of significant structure transition (liposomes to bicelles). The small-angle neutron scattering (SANS) spectrum for these particles fitted a core-shell bicelle model, providing further evidence of bicelle formation. A transition from a monomodal to a bimodal size distribution occurred as the temperature was increased, with this transition taking place at lower temperatures when higher SL-ChEO10 concentrations were used. SANS showed that this temperature-dependent size change was reversible, suggesting the SL-ChEO10 bicelles were stable against temperature, hence making them suitable for several applications.
机译:Bicelles已经集中研究了用作药物递送载体和生物学研究,但它们用低成本材料的制备和通过简单的过程可以允许其用于其他目的。在此,通过使用氢化大豆卵磷脂(SL)和非离子表面活性剂的混合物和非离子表面活性剂,聚氧乙烯胆汁淤积醚(CHOO10)的混合物制备双自发性方法,然后研究了组合物和温度对散尔结构的影响,这设计量身定制的系统非常重要。随着CHOO10(XC)的级分,获得了几十纳米粒度小的双峰粒度分布,大粒径为几百纳米,并且当XC≥0.6时,观察小颗粒,暗示形成显着的结构转变(脂质体到Bicelles)。这些颗粒的小角度中子散射(SAN)谱配合了核心壳体鞋板模型,提供了鞋板形成的进一步证据。随着温度的增加,从单阳极尺寸分布的转变发生,随着使用更高的SL-CHOO10浓度,在较低的温度下发生这种转变。 SANS表明,这种温度依赖性尺寸变化是可逆的,表明SL-Cheo10双胶稳定温度,因此使它们适用于几种应用。

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