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首页> 外文期刊>Acta biomaterialia >Surface modification of lipid nanocapsules with polysaccharides: from physicochemical characteristics to in vivo aspects.
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Surface modification of lipid nanocapsules with polysaccharides: from physicochemical characteristics to in vivo aspects.

机译:用多糖对脂质纳米胶囊进行表面修饰:从理化特性到体内研究。

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Attaching polysaccharides to the surface of nanoparticles offers the possibility of modifying the physicochemical and biological properties of the core particles. The surface of lipid nanocapsules (LNCs) was modified by post-insertion of amphiphilic lipochitosan (LC) or lipodextran (LD). Modelling of these LNCs by the drop tensiometer technique revealed that the positively charged LC made the LNC surface more rigid, whereas the neutral, higher M(W) LD had no effect on the surface elasticity. Both LNC-LC and LNC-LD activated the complement system more than the blank LNC, thus suggesting increased capture by the mononuclear phagocyte system. In vitro, the positively charged LNC-LC were more efficiently bound by the model HEK293(β3) cells compared to LNC and LNC-LD. Finally, it was observed that neither LC nor LD changed the in vivo biodistribution properties of LNCs in mice. These polysaccharide-coated LNCs, especially LNC-LC, are promising templates for targeting ligands (e.g. peptides, proteins) or therapeutic molecules (e.g. siRNA).
机译:将多糖附着到纳米颗粒的表面提供了改变核心颗粒的物理化学和生物学特性的可能性。脂质纳米胶囊(LNCs)的表面通过两亲性脂壳聚糖(LC)或lipodextran(LD)的后插入进行修饰。通过落膜张力计技术对这些LNC进行建模显示,带正电荷的LC使LNC表面更坚硬,而中性,较高的M(W)LD对表面弹性没有影响。 LNC-LC和LNC-LD都比空白LNC激活补体系统更多,因此表明单核吞噬细胞系统的捕获增加。在体外,与LNC和LNC-LD相比,带正电荷的LNC-LC被模型HEK293(β3)细胞更有效地结合。最后,观察到LC和LD均未改变LNC在小鼠体内的生物分布特性。这些多糖包被的LNC,特别是LNC-LC,是靶向配体(例如肽,蛋白质)或治疗性分子(例如siRNA)的有希望的模板。

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