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PEG-Farnesyl thiosalicylic acid telodendrimer micelles as an improved formulation for targeted delivery of paclitaxel

机译:PEG-法尼基硫代水杨酸telodendrimer胶束作为紫杉醇靶向递送的改良制剂

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摘要

We have recently designed and developed a dual-functional drug carrier that is based on poly(ethylene glycol) (PEG)-derivatized farnesylthiosalicylate (FTS, a nontoxic Ras antagonist). PEG5K-FTS2 readily form micelles (20-30 nm) and hydrophobic drugs such as paclitaxel (PTX) could be effectively loaded into these micelles. PTX formulated in PEG 5K-FTS2 micelles showed an antitumor activity that was more efficacious than Taxol in a syngeneic mouse model of breast cancer (4T1.2). In order to further improve our PEG-FTS micellar system, four PEG-FTS conjugates were developed that vary in the molecular weight of PEG (PEG 2K vs PEG5K) and the molar ratio of PEG/FTS (1/2 vs 1/4) in the conjugates. These conjugates were characterized including CMC, drug loading capacity, stability, and their efficacy in delivery of anticancer drug PTX to tumor cells in vitro and in vivo. Our data showed that the conjugates with four FTS molecules were more effective than the conjugates with two molecules of FTS and that FTS conjugates with PEG5K were more effective than the counterparts with PEG2K in forming stable mixed micelles. PTX formulated in PEG5K-FTS4 micelles was the most effective formulation in inhibiting the tumor growth in vivo.
机译:我们最近设计并开发了一种基于聚(乙二醇)(PEG)衍生的法呢基硫代水杨酸酯(FTS,一种无毒的Ras拮抗剂)的双功能药物载体。 PEG5K-FTS2容易形成胶束(20-30 nm),疏水性药物(例如紫杉醇(PTX))可以有效地装入这些胶束中。 PEG 5K-FTS2胶束中配制的PTX在乳腺癌的同系小鼠模型(4T1.2)中显示出比紫杉醇更有效的抗肿瘤活性。为了进一步改善我们的PEG-FTS胶束系统,开发了四种PEG-FTS共轭物,它们的PEG分子量(PEG 2K与PEG5K)和PEG / FTS的摩尔比(1/2与1/4)不同。在共轭物中。这些缀合物的特征包括CMC,药物负载能力,稳定性及其在体外和体内将抗癌药PTX递送至肿瘤细胞的功效。我们的数据表明,具有四个FTS分子的结合物比具有两个FTS分子的结合物更有效,并且具有PEG5K的FTS结合物比具有PEG2K的结合物更有效地形成稳定的混合胶束。在PEG5K-FTS4胶束中配制的PTX是抑制体内肿瘤生长的最有效制剂。

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