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首页> 外文期刊>European Polymer Journal >Influence of surface properties of polymeric nanoparticles on their membrane affinity
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Influence of surface properties of polymeric nanoparticles on their membrane affinity

机译:聚合物纳米粒子的表面性质对其膜亲和力的影响

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Biodegradable polylactic/glycolic acid copolymers are widely used as colloidal drug delivery systems. PLGA nanoparticles were prepared using non-ionic, PEO-containing block copolymer (Pluronic) and charged polymeric (PEI) surface modifiers. Physicochemical properties such as size, size distribution, zeta potential, surface composition, and colloid stability were compared to their behavior at interfaces. Adhesion of the PLGA nanoparticles to solid surface, accumulation at water surface and their cell membrane affinity (using a Langmuir lipid monolayer as a model system) were characterized. Significant differences were observed in surface activity and adhesion as well as in membrane affinity of nanoparticles depending on their surface composition. The interplay of electrostatic and steric effects resulted in sufficient colloid stability and maximum membrane affinity for the system stabilized with the mixture of Pluronic and PEI.
机译:可生物降解的聚乳酸/乙醇酸共聚物被广泛用作胶体药物递送系统。使用非离子的,含PEO的嵌段共聚物(Pluronic)和带电的聚合物(PEI)表面改性剂制备PLGA纳米颗粒。将物理化学性质(例如大小,大小分布,ζ电位,表面组成和胶体稳定性)与其在界面处的行为进行了比较。表征了PLGA纳米粒子对固体表面的粘附力,在水表面的蓄积及其细胞膜亲和力(使用Langmuir脂质单层作为模型系统)。观察到纳米颗粒的表面活性和附着力以及膜亲和力的显着差异,具体取决于它们的表面组成。静电和空间效应的相互作用导致了足够的胶体稳定性和最大的膜亲和力,从而使Pluronic和PEI的混合物得以稳定。

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