首页> 美国卫生研究院文献>Iranian Journal of Pharmaceutical Research : IJPR >Docetaxel Loaded PEG-PLGA Nanoparticles: Optimized Drug Loading In-vitro Cytotoxicity and In-vivo Antitumor Effect
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Docetaxel Loaded PEG-PLGA Nanoparticles: Optimized Drug Loading In-vitro Cytotoxicity and In-vivo Antitumor Effect

机译:多西他赛负载的PEG-PLGA纳米颗粒:优化的药物负载体外细胞毒性和体内抗肿瘤作用

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摘要

In this study a 3-factor, 3-level Box-Behnken design was used to prepare optimized docetaxel (DTX) loaded pegylated poly lactide-co-glycolide (PEG-PLGA) Nanoparticles (NPs) with polymer concentration (X1), drug concentration (X2) and ratio of the organic to aqueous solvent (X3) as the independent variables and particle size (Y1), poly dispersity index (PDI) (Y2) and drug loading (Y3) as the responses. The cytotoxicity of optimized DTX loaded PEG-PLGA NPs was studied in SKOV3 tumor cell lines by standard MTT assay. The in-vivo antitumor efficacy of DTX loaded PLGA-PEG NPs was assessed in tumor bearing female BALB/c mice. The optimum level of Y1, Y2 and Y3 predicted by the model were 188 nm, 0.16 and 9% respectively with perfect agreement with the experimental data. The in-vitro release profile of optimum formulation showed a burst release of approximately 20% (w/w) followed by a sustained release profile of the loaded drug over 288 h. The DTX loaded optimized nanoparticles showed a greater cytotoxicity against SKOV3 cancer cells than free DTX. Enhanced tumor-suppression effects were achieved with DTX-loaded PEG-PLGA NPs. These results demonstrated that optimized NPs could be a potentially useful delivery system for DTX as an anticancer agent.
机译:在这项研究中,采用三因素,三级Box-Behnken设计来制备优化的载有多西他赛(DTX)的聚乙二醇化聚丙交酯-乙交酯共聚物(PEG-PLGA)纳米颗粒(NPs),其聚合物浓度(X1),药物浓度(X2)和有机溶剂与水性溶剂的比例(X3)作为自变量,粒度(Y1),多分散指数(PDI)(Y2)和载药量(Y3)作为响应。通过标准MTT分析在SKOV3肿瘤细胞系中研究了优化的DTX负载的PEG-PLGA NP的细胞毒性。在荷瘤雌性BALB / c小鼠中评估了载有DTX的PLGA-PEG NP的体内抗肿瘤功效。该模型预测的Y1,Y2和Y3的最佳水平分别为188 nm,0.16和9%,与实验数据完全吻合。最佳制剂的体外释放曲线显示了约20%(w / w)的突发释放,随后是载药在288小时内的持续释放曲线。载有DTX的优化纳米颗粒显示出对SKOV3癌细胞的细胞毒性要大于游离DTX。负载DTX的PEG-PLGA NP增强了肿瘤抑制作用。这些结果表明,优化的NP可能是DTX作为抗癌药的潜在有用的递送系统。

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