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首页> 外文期刊>Biomacromolecules >Polymersomes with Endosomal pH-Induced Vesicle-to-Micelle Morphology Transition and a Potential Application for Controlled Doxorubicin Delivery
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Polymersomes with Endosomal pH-Induced Vesicle-to-Micelle Morphology Transition and a Potential Application for Controlled Doxorubicin Delivery

机译:具有内体pH-诱导的囊泡 - 胶束形态转变的聚合物,对受控的多柔比星输送潜在施用

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摘要

In order to obtain a novel, pH responsive polymersome system, a series of pH responsive block copolymers were synthesized via the reversible addition fragmentation chain transfer (RAFT) polymerization of 3,4-dihydro-2H-pyran (DHP) protected 2-hydroxyethyl methacrylate (HEMA) (2-((tetrahydro-2H-pyran-2-yl)oxy)ethyl methacrylate (THP-HEMA)) and 2(dimethylamino) ethyl methacrylate (DMAEMA) using p(THP-HEMA) as a macro chain transfer agent (mCTA). The degree of polymerization (DP) of the p(THP-HEMA) block was fixed to 35, whereas the DP of the p(DMAEMA) block was systematically varied from 21 to 50. In aqueous solution, the block copolymer with the shortest p(DMAEMA) block (DP = 21) self-assembled into vesicles, while the polymer with 30 units of p(DMAEMA) formed a mixture of micelles and vesicles. The polymer with the longest p(DMAEMA) block (DP = 50) formed exclusively micelles. The corresponding polymersomes exhibited a morphology transition from vesicles at neutral pH values to micelles upon lowering the pH value down to endosomal pH value as investigated by DLS and cryo-TEM. The capability of polymersomes to encapsulate both hydrophobic (e.g., Nile Red) and hydrophilic (e.g., doxorubicin hydrochloride (DOX.HCl)) cargos was verified by in vitro studies. Drug release studies demonstrated that the DOX.HCl release is significantly accelerated under acidic pH values compared to physiological conditions. Cytotoxicity studies revealed that DOX.HCl loaded polymersomes exhibited an efficient cell death comparable to free DOX.HCl. CLSM and flow cytometry studies showed that DOX.HCl loaded vesicles were easily taken up by L929 cells and were mainly located in the cytoplasm and cell nuclei.
机译:为了获得新颖的pH响应性聚合物组系统,通过可逆添加碎片链转移(筏)聚合为3,4-二氢-2H-吡喃(DHP)保护的2-羟乙基甲基丙烯酸酯,通过可逆加成碎片链转移(RAFT)聚合来合成一系列pH响应嵌段共聚物(HEMA)(2 - ((四羟基-2H-吡喃-2-基)氧基乙基丙烯酸甲酯(THP-HEMA))和2(二甲基氨基)甲基丙烯酸乙酯(DMAEMA)使用P(THP-HEMA)作为宏链转移代理人(MCTA)。将P(THP-HEMA)块的聚合度(DP)固定为35,而P(DMAEMA)嵌段的DP系统地从21-50系统变化。在水溶液中,嵌段共聚物具有最短的p (DMAEMA)块(DP = 21)自组装成囊泡,而具有30单位P(DMAEMA)的聚合物形成胶束和囊泡的混合物。具有最长P(DMAEMA)嵌段(DP = 50)的聚合物专门形成胶束。相应的聚合物在将pH值降低到由DLS和Cryo-TEM研究的基因值下降至内体pH值时,表现出从中性pH值的囊泡的形态转变为胶束。通过体外研究验证了聚合物以包封疏水性(例如,尼罗红)和亲水性(例如,盐酸多柔比星(DOX.HCL))尸体的能力。药物释放研究表明,与生理条件相比,DOX.HCL释放在酸性pH值下显着加速。细胞毒性研究表明,DOX.HCL负载的聚合物表现出与自由DOX.HCL相当的有效细胞死亡。 CLSM和流式细胞术研究表明,L929细胞容易占据DOX.HCL负载囊泡,主要位于细胞质和细胞核中。

著录项

  • 来源
    《Biomacromolecules》 |2017年第10期|共11页
  • 作者单位

    Friedrich Schiller Univ Jena Lab Organ &

    Macromol Chem IOMC Humboldtstr 10 D-07743 Jena Germany;

    Friedrich Schiller Univ Jena Lab Organ &

    Macromol Chem IOMC Humboldtstr 10 D-07743 Jena Germany;

    Friedrich Schiller Univ Jena Lab Organ &

    Macromol Chem IOMC Humboldtstr 10 D-07743 Jena Germany;

    Friedrich Schiller Univ Jena Lab Organ &

    Macromol Chem IOMC Humboldtstr 10 D-07743 Jena Germany;

    Friedrich Schiller Univ Jena Lab Organ &

    Macromol Chem IOMC Humboldtstr 10 D-07743 Jena Germany;

    Friedrich Schiller Univ Jena Lab Organ &

    Macromol Chem IOMC Humboldtstr 10 D-07743 Jena Germany;

    Friedrich Schiller Univ Jena Lab Organ &

    Macromol Chem IOMC Humboldtstr 10 D-07743 Jena Germany;

    Friedrich Schiller Univ Jena JCSM Philosophenweg 7 D-07743 Jena Germany;

    Friedrich Schiller Univ Jena Lab Organ &

    Macromol Chem IOMC Humboldtstr 10 D-07743 Jena Germany;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 分子生物学;
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