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首页> 外文期刊>Pharmaceutics >Vitamin E-Loaded PLA- and PLGA-Based Core-Shell Nanoparticles: Synthesis, Structure Optimization and Controlled Drug Release
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Vitamin E-Loaded PLA- and PLGA-Based Core-Shell Nanoparticles: Synthesis, Structure Optimization and Controlled Drug Release

机译:维生素E负载的PLA和PLGA为基础的核壳纳米粒子:合成,结构优化和可控的药物释放。

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摘要

The (±)-α-Tocopherol (TP) with vitamin E activity has been encapsulated into biocompatible poly(lactic acid) (PLA) and poly(lactide- co -glycolide) (PLGA) carriers, which results in the formation of well-defined nanosized (d ~200–220 nm) core-shell structured particles (NPs) with 15–19% of drug loading (DL%). The optimal ratios of the polymer carriers, the TP active drug as well as the applied Pluronic F127 (PLUR) non-ionic stabilizing surfactant, have been determined to obtain NPs with a TP core and a polymer shell with high encapsulation efficiency (EE%) (69%). The size and the structure of the prepared core-shell NPs as well as the interaction of the carriers and the PLUR with the TP molecules have been determined by transmission electron microscopy (TEM), dynamic light scattering (DLS), infrared spectroscopy (FT-IR) and turbidity studies, respectively. Moreover, the dissolution of the TP from the polymer NPs has been investigated by spectrophotometric measurements. It was clearly confirmed that increase in the EE% from ca. 70% (PLA/TP) to ca. 88% (PLGA65/TP) results in the controlled release of the hydrophobic TP molecules (7 h, PLA/TP: 34%; PLGA75/TP: 25%; PLGA65/TP: 18%). By replacing the PLA carrier to PLGA, ca. 15% more active substance can be encapsulated in the core (PLA/TP: 65%; PLGA65/TP: 80%).
机译:具有维生素E活性的(±)-α-生育酚(TP)已封装到生物相容性聚乳酸(PLA)和聚丙交酯-乙交酯(PLGA)载体中,从而形成了定义了纳米级(d〜200–220 nm)的核壳结构颗粒(NPs),其载药量为15–19%(DL%)。确定了聚合物载体,TP活性药物以及所应用的Pluronic F127(PLUR)非离子稳定表面活性剂的最佳比例,以获得具有TP核和高封装效率(EE%)的聚合物壳的NP。 (69%)。已通过透射电子显微镜(TEM),动态光散射(DLS),红外光谱(FT-)确定了制备的核-壳NP的大小和结构以及载体和PLUR与TP分子的相互作用。 IR)和浊度研究。而且,已经通过分光光度法研究了TP从聚合物NP中的溶解。清楚地证实,EE%从约10%增加。约70%(PLA / TP) 88%(PLGA65 / TP)导致疏水性TP分子的受控释放(7小时,PLA / TP:34%; PLGA75 / TP:25%; PLGA65 / TP:18%)。通过将PLA载具替换为PLGA,可以将15%以上的活性物质封装在核心中(PLA / TP:65%; PLGA65 / TP:80%)。

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