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首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >Synthesis and characterization of supramolecular biovector (SMBV) specifically designed for the entrapment of ionic molecules
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Synthesis and characterization of supramolecular biovector (SMBV) specifically designed for the entrapment of ionic molecules

机译:超分子生物载体(SMBV)的合成和表征,专为离子分子的包埋而设计

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摘要

Supramolecular biovectors (SMBV) are nanoparticular drug carriers composed of an internal crosslinked solid core externally grafted with fatty acids and surrounded with a phospholipid layer. We show in this paper that the internal core can be derivatized with anionic ligands such as phosphate in order to allow the efficient entrapment of cationic molecules through a process akin to ion exchange. Synthesis of SMBV involved first a cross linking and derivatization step of polysaccharides followed by a homogenization, a drying and a regioselective acylation step. Acylated polysaccharide cores are thus obtained which can be loaded with drugs and wrapped with a phospholipid layer. The SMBVs obtained are characterized through their size, 20 nm, and their ability to filter through 0.22 μm pore size membrane. Gel permeation chromatography experiments performed with various phospholipid/acylated cores ratios indicate that SMBVs form entities distinct from liposomes and that the optimum phospholipid/acylated cores ratio for this specific type of SMBVs is close to 100%. The supramolecular structure of SMBVs and in particular the spatial proximity between acylated cores and phospholipids is demonstrated through resonance energy transfer experiments. The drug loading capability of SMBVs is illustrated by the preparation of gentamicin and doxorubicin loaded SMBV. The therapeutic potential of SMBVs is then discussed notably in the light of a possible biomimetism with low density lipoproteins (LDL).
机译:超分子生物载体(SMBV)是纳米颗粒药物载体,由内部交联的固体核心组成,外部用脂肪酸接枝并被磷脂层包围。我们在本文中表明,可以用阴离子配体(例如磷酸酯)衍生内部核,以便通过类似于离子交换的过程有效捕获阳离子分子。 SMBV的合成首先涉及多糖的交联和衍生化步骤,然后是均质化,干燥和区域选择性酰化步骤。由此获得可以负载药物并包裹有磷脂层的酰化多糖核。获得的SMBV的特征是尺寸为20 nm,并且具有过滤孔径为0.22μm的膜的能力。用各种磷脂/酰化核心比例进行的凝胶渗透色谱实验表明,SMBV形成了与脂质体不同的实体,并且对于这种特定类型的SMBV,最佳的磷脂/酰化核心比例接近100%。通过共振能量转移实验证明了SMBV的超分子结构,尤其是酰化核与磷脂之间的空间接近性。 SMBVs的载药能力通过庆大霉素和阿霉素负载的SMBV的制备来说明。然后,针对可能与低密度脂蛋白(LDL)的生物模仿而讨论SMBV的治疗潜力。

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