首页> 外文期刊>European journal of pharmaceutics and biopharmaceutics: official journal of Arbeitsgemeinschaft fuer Pharmazeutische Verfahrenstechnik e.V >Biodegradable polymersomes with an ionizable membrane: Facile preparation, superior protein loading, and endosomal pH-responsive protein release
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Biodegradable polymersomes with an ionizable membrane: Facile preparation, superior protein loading, and endosomal pH-responsive protein release

机译:具有可电离膜的可生物降解聚合物囊泡:制备简便,蛋白质负载量高,内体pH响应性蛋白质释放

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摘要

Novel biodegradable polymersomes containing an ionizable membrane were developed for efficient loading and rapid intracellular release of proteins. The polymersomes were prepared from poly(ethylene glycol)-b-poly(trimethylene carbonate) (PEG-PTMC) block copolymer derivatives containing acrylate, carboxylic acid, and amine groups along PTMC block, which are denoted as PEG-PTMC(AC), PEG-PTMC(COOH), and PEG-PTMC(NH 2), respectively. Notably, nano-sized polymersomes (95.1-111.6 nm) were formed by directly dispersing these copolymers in phosphate buffer at room temperature. Both FITC-labeled bovine serum albumin (FITC-BSA) and cytochrome C (FITC-CC) were readily loaded into PEG-PTMC(COOH) and PEG-PTMC(NH 2) polymersomes with remarkably high loading levels. Interestingly, in vitro release studies showed that PEG-PTMC(COOH) and PEG-PTMC(NH 2) polymersomes had pH-responsive protein release behaviors in which significantly faster protein release was observed at endosomal pH than at physiological pH. MTT assays indicated that these polymersomes had low cytotoxicity. Furthermore, confocal laser scanning microscope (CLSM) observations revealed that FITC-CC loaded polymersomes efficiently delivered proteins into MCF-7 cells following 24 h incubation. Importantly, flow cytometry showed that CC-loaded polymersomes induced markedly enhanced apoptosis in MCF-7 cells as compared to free CC. These novel membrane ionizable biodegradable polymersomes have appeared as highly promising nanocarriers for efficient intracellular protein delivery.
机译:新型的可生物降解的含有可电离膜的聚合物囊泡已经开发出来,可以有效地加载蛋白质并迅速在细胞内释放。聚合物囊体由沿着PTMC嵌段包含丙烯酸酯,羧酸和胺基的聚(乙二醇)-b-聚碳酸三亚甲基酯(PEG-PTMC)嵌段共聚物衍生物制备,称为PEG-PTMC(AC), PEG-PTMC(COOH)和PEG-PTMC(NH 2)。值得注意的是,通过将这些共聚物在室温下直接分散在磷酸盐缓冲液中,可以形成纳米级的聚合物囊泡(95.1-111.6 nm)。 FITC标记的牛血清白蛋白(FITC-BSA)和细胞色素C(FITC-CC)都可以很容易地装载到PEG-PTMC(COOH)和PEG-PTMC(NH 2)聚合物囊泡中,装载量非常高。有趣的是,体外释放研究表明PEG-PTMC(COOH)和PEG-PTMC(NH 2)聚合物囊泡具有pH响应的蛋白释放行为,其中在内体pH值下观察到的蛋白释放明显快于生理pH值。 MTT测定表明这些聚合物囊泡具有低细胞毒性。此外,共聚焦激光扫描显微镜(CLSM)的观察结果表明,孵育24小时后,装有FITC-CC的聚合物囊泡可有效地将蛋白质递送至MCF-7细胞。重要的是,流式细胞仪显示,与游离CC相比,负载CC的聚合物囊泡可显着增强MCF-7细胞的凋亡。这些新型的膜可电离的生物可降解聚合物囊泡已显示为高效胞内蛋白递送的高度有前途的纳米载体。

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