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首页> 外文期刊>Journal of biomaterials science >Amphiphilic block copolymers bearing six-membered ortho ester ring in side chains as potential drug carriers: synthesis, characterization, and in vivo toxicity evaluation
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Amphiphilic block copolymers bearing six-membered ortho ester ring in side chains as potential drug carriers: synthesis, characterization, and in vivo toxicity evaluation

机译:在侧链带有六元原酸酯环的两亲嵌段共聚物作为潜在的药物载体:合成,表征和体内毒性评估

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A new type of amphiphilic block copolymers, poly(ethylene glycol)-block-poly(2-methylacrylicacid 2-methoxy-5-methyl-[1,3]dioxin-5-ylmethyl ester) (PEG-b-PMME), bearing acid-labile six-membered ortho ester rings in side chains was synthesized by reversible addition-fragmentation chain-transfer polymerization, and the influence of chain length of the hydrophobic PMME block on micelle properties was investigated. The PEG-b-PMME micelles were stable in aqueous buffer at physiological pH with a low critical micelle concentration. Nile Red as a model drug was encapsulated into the micelles to explore the release profiles. The Nile Red-loaded polymeric micelles showed rapid release of Nile Red in weakly acidic environments (pH 5) but slow release under physiological condition (pH 7.4), due to different hydrolysis rate of ortho ester side chains of PEG-b-PMME. The Paclitaxel (PTX)-loaded micelles retained potency in killing lung cancer cells (A549), compared with the free PTX. No obvious toxicity was found in vitro and in vivo after intraperitoneal injection of the micelles, which confirms that the PEG-b-PMME micelles with unique acid-labile characteristic have great potential as nano-scaled carriers for drug delivery.
机译:一种新型的两亲嵌段共聚物,聚(乙二醇)-嵌段-聚(2-甲基丙烯酸2-甲氧基-5-甲基-[1,3]二恶英-5-基甲基酯)(PEG-b-PMME),带有通过可逆的加成-断裂链转移聚合反应合成了侧链酸不稳定的六元原酸酯环,研究了疏水性PMME嵌段的链长对胶束性能的影响。 PEG-b-PMME胶束在生理pH下的水性缓冲液中稳定,临界胶束浓度低。将尼罗红(Nile Red)作为模型药物封装在胶束中,以探索释放曲线。载有尼罗红的聚合物胶束在弱酸性环境中(pH 5)迅速释放尼罗红,但在生理条件下(pH 7.4)则缓慢释放,这是由于PEG-b-PMME原酸酯侧链的水解速率不同。与游离PTX相比,装载紫杉醇(PTX)的胶束在杀死肺癌细胞(A549)方面保留了效力。腹膜内注射胶束后在体内和体外均未发现明显的毒性,这证明具有独特的酸不稳定特性的PEG-b-PMME胶束作为纳米级载药载体具有巨大潜力。

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