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Enhanced Stability of Polymeric Micelles Based on Post-functionalized Poly(ethylene glycol)-b-Poly(γ-propargyl l-glutamate): the Substituent Effect

机译:基于后官能化聚(乙二醇)-B-聚(γ-丙基L-谷氨酸)的聚合物胶束增强稳定性:取代基效应

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摘要

One of the major obstacles that delay the clinical translation of polymeric micelle drug delivery systems is whether these self-assembled micelles can retain their integrity in blood following intravenous (IV) injection. The objective of this study was to evaluate the impact of core functionalization on the thermodynamic and kinetic stability of polymeric micelles. The combination of ring-opening polymerization of N-carboxyanhydride (NCA) with highly efficient “click” coupling has enabled easy and quick access to a family of poly(ethylene glycol)-block-poly(γ-R-glutamate)s with exactly the same block lengths, for which the substituent “R” is tuned. The structures of these copolymers were carefully characterized by 1H NMR, FT-IR and GPC. Using pyrene as the fluorescence probe, the critical micelle concentrations (CMCs) of these polymers were found to be in the range of 10−7-10−6 M, which indicates good thermodynamic stability for the self-assembled micelles. The incorporation of polar side groups in the micelle core leads to high CMC values; however, micelles prepared from these copolymers are kinetically more stable in the presence of serum and upon SDS disturbance. It was also observed that these polymers could effectively encapsulate paclitaxel (PTX) as a model anticancer drug and the micelles possessing better kinetic stability showed better suppression of the initial “burst” release and exhibited more sustained release of PTX. These PTX-loaded micelles exerted comparable cytotoxicity against HeLa cells as the clinically approved Cremophor® PTX formulation while the block copolymers showed much lower toxicity compared to the Cremophor-ethanol mixture. The present work demonstrated that the >PEG-b-PPLG can be a uniform block copolymer platform toward development of polymeric micelle delivery systems for different drugs through the facile modification of the PPLG block.
机译:延迟聚合物胶束药物递送系统的临床翻译的主要障碍之一是这些自组装胶束是否可以在静脉内(IV)注射后能够在血液中保持其完整性。本研究的目的是评估核心功能化对聚合物胶束热力学和动力学稳定性的影响。 N-羧酐(NCA)的开环聚合与高效“点击”偶联的组合使得能够容易地快速地进入聚(乙二醇) - Block-poly(γ-R-谷氨酸)S的家族调谐取代基“R”的相同块长度。通过 1℃,FT-IR和GPC仔细考虑这些共聚物的结构。使用芘作为荧光探针,发现这些聚合物的临界胶束浓度(CMC)在10 -7 / sop> -10 -6 / sop> m的范围内,这表示用于自组装胶束的良好热力学稳定性。在胶束芯中掺入极性侧基团导致高CMC值;然而,由这些共聚物制备的胶束在血清存在和SDS扰动时在动力学上更稳定。还观察到这些聚合物可以有效地包封紫杉醇(PTX)作为模型抗癌药物,具有更好的动力学稳定性的胶束显示出更好地抑制初始“突发”释放,并表现出更持续的PTX释放。这些PTX加载的胶束在临床上批准的Cremophor®PTx制剂中施加了与HeLa细胞的相当细胞毒性,而嵌段共聚物与Cremophor-乙醇混合物相比显示出大得多的毒性。本作者证明<强> PEG-B-PPLG 可以是通过PPLG嵌段的容易改性,用于不同药物的聚合物胶束递送系统的均匀嵌段共聚物平台。

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