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首页> 外文期刊>Journal of Controlled Release: Official Journal of the Controlled Release Society >Polymersomes of asymmetric bilayer membrane formed by phase-guided assembly
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Polymersomes of asymmetric bilayer membrane formed by phase-guided assembly

机译:相引导组装形成不对称双层膜的聚合物囊泡

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Encapsulating delicate biomolecules into submicron-sized polymer particulate systems with preserved native conformation and sufficient loading efficiency is of great challenge. To address this issue, we developed a unique polymersome which differs from reported polymersome in that its bilayer membrane was formed of two different amphiphilic diblock copolymers in an "asymmetric" way. By adding two diblock copolymers, poly (ethylene glycol)-block-poly (ε -caprolactone) (PEG-PCL) and dextran-block-poly (ε-caprolactone) (DEX-PCL), into a so-called dextran-in-PEG aqueous two-phase system, DEX-PCL formed the inner leaflet around the dispersed dextran phase and PEG-PCL formed the outer leaflet with the PEG block facing the PEG continuous phase. We name this unique assembly process as "phase-guided assembly". Polymersomes of asymmetric bilayer membrane possess a series of advantages over "symmetric" polymer bilayer vesicles previously reported. The asymmetric bilayer created a different chemical environment of the interior to which proteins were encapsulated highly efficiently (up to 90%) by thermodynamically favored partition. Probably due to the thermodynamic preference, erythropoietin (EPO) encapsulated in this system showed a well-preserved bioactivity in cell proliferation assay. The core of the polymersomes may be cross-linked to enhance their mechanical strength. Phase-guided assembly system and asymmetric bilayer polymersomes demonstrated in this study may serve the high demands for delivering nucleotide and protein medicines and other biological applications.
机译:将精细的生物分子封装到具有保留的天然构象和足够的装载效率的​​亚微米尺寸的聚合物颗粒系统中是很大的挑战。为了解决这个问题,我们开发了一种独特的聚合物囊泡,该聚合物囊泡与报道的聚合物囊泡的不同之处在于其双层膜是由两种不同的两亲性二嵌段共聚物以“不对称”方式形成的。通过添加两种二嵌段共聚物,将聚(乙二醇)-嵌段-聚(ε-己内酯)(PEG-PCL)和右旋糖酐-嵌段-聚(ε-己内酯)(DEX-PCL)加入到所谓的右旋糖酐中-PEG水性两相系统,DEX-PCL在分散的葡聚糖相周围形成内部小叶,而PEG-PCL在PEG嵌段面向PEG连续相的情况下形成外部小叶。我们将这种独特的组装过程称为“阶段引导组装”。与先前报道的“对称”聚合物双层囊泡相比,非对称双层膜的聚合物囊泡具有一系列优点。不对称双层在内部产生了不同的化学环境,通过热力学上有利的分配,蛋白质被高效地封装到内部(高达90%)。可能由于热力学偏好,封装在该系统中的促红细胞生成素(EPO)在细胞增殖测定中显示出良好保存的生物活性。聚合物囊泡的核心可以被交联以增强它们的机械强度。这项研究中证明的相引导组装系统和不对称双层聚合物囊泡可能满足对递送核苷酸和蛋白质药物以及其他生物学应用的高要求。

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