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首页> 外文期刊>Pharmaceutical research >Fabrication of TPGS-Stabilized Liposome-PLGA Hybrid Nanoparticle Via a New Modified Nanoprecipitation Approach: In Vitro and In Vivo Evaluation
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Fabrication of TPGS-Stabilized Liposome-PLGA Hybrid Nanoparticle Via a New Modified Nanoprecipitation Approach: In Vitro and In Vivo Evaluation

机译:通过新改性纳米沉淀方法制备TPGS稳定的脂质体 - PLGA杂交纳米粒子:体外和体内评价

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摘要

PurposeIn this study, a new modified nanoprecipitation approach that more efficient and simpler than conventional approach was developed to synthesize D-alpha-Tocopheryl polyethylene glycol 1000 succinate stabilized liposome-PLGA hybrid nanoparticle, loaded with simvastatin (ST-TLPN).MethodsThe optimum formulation was screened via investigation of the impact of TPGS mass within polymeric core and lipid shell on the physicochemical properties of nanoparticles respectively. FTIR, and drug release of ST-TLPN were also systematically determined. Finally, the cellular internalization was evaluated using the murine macrophage cell line, in vivo pharmacokinetic behavior and antiatherogenic efficacies were elaborately examined in atherosclerotic rabbit models.ResultsWith the weight ratio of TPGS-to-PLGA in organic phase of 30% and TPGS-to-lipid in aqueous phase of 35%, ST-TLPN exhibited core-shell structure, sub-100nm size, EE% of over 90% and a slow release profile. The excellent cellular uptake was displayed in RAW264.7 cell line. Improved pharmacokinetic behavior, and enhanced antiatherogenic efficacy of ST-TLPN in the model animals were also revealed compared with ST-loaded PLGA nanoparticles.ConclusionThese findings suggest the modified nanoprecipitation method holds great potential for fabricating LPN, aided by the multiple functions of TPGS. And the prepared TLPN is a promising delivery system for use in the pharmaceutical field.
机译:目的,该研究,开发了一种新的改进的纳米折叠方法,所述改进的纳米折叠方法比常规方法更有效和更简单,合成D-α-生育基聚乙二醇1000琥珀酸盐稳定的脂质体 - PLGA杂交纳米粒子,其装载辛伐他汀(ST-TLPN)。方法是最佳制剂通过研究TPGS质量在聚合物核心和脂壳中的影响分别对纳米颗粒的物理化学性质进行筛选。 ST-TLPN的FTIR和药物释放也被系统地确定。最后,使用鼠巨噬细胞系评价细胞内化,在体内药代动力学行为中,在动脉粥样硬化兔模型中精确地检查抗真菌菌疗效。培养物在30%和TPG的有机阶段中TPGS-TO-PLGA的重量比和TPGS - 在35%的水相中脂质,ST-TLPN表现出核壳结构,亚100nm尺寸,ee%超过90%的浓度和较慢的释放曲线。优异的细胞摄取在Raw264.7细胞系中。与ST负载的PLGA纳米颗粒相比,还揭示了改善的药代动力学行为,并增强了ST-TLPN的ST-TLPN的抗肿瘤菌疗效。结论该结果表明改性纳米沉淀方法具有制造LPN的巨大潜力,辅助TPG的多功能。而制备的TLPN是用于药物领域的有前途的输送系统。

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