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AWE-somes: All Water Emulsion Bodies with Permeable Shells and Selective Compartments

机译:AWE-Somes:所有水乳液体,具有渗透性壳和选择性隔室

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摘要

Living cells exploit compartmentalization within organelles to spatially and temporally control reactions and pathways. Here, we use the all aqueous two phase system (ATPS) of poly(ethylene glycol) (PEG) and dextran to develop all water emulsion bodies, AWE-somes, a new class of encapsulated double emulsions as potential cell mimics. AWE-somes feature rigid polyelectrolyte (PE)/nanoparticle (NP) shells and double emulsion interiors. The shells form via complexation of PE and NP at interfaces of ATPS. The NPs, excluded from the drop phase, create an osmotic stress imbalance that removes water from the encapsulated phase and draws droplets of external PEG phase into the shells to form the double emulsion interior. We demonstrate that molecules can permeate the AWE-some shells, selectively partition into the internal droplets, and undergo reaction. AWE-somes have significant potential for creating functional, biocompatible protocell systems.
机译:活细胞在细胞器内剥削分区化到空间和时间控制反应和途径。 在这里,我们使用聚(乙二醇)(PEG)(PEG)和葡聚糖的所有水化合物水溶液(ATP)和葡聚糖开发所有水乳液体,AWE-Somes,作为潜在细胞模拟的新类包封的双乳液。 AWE-Somes具有刚性聚电解质(PE)/纳米颗粒(NP)壳和双乳液内部。 通过在ATP的界面处通过PE和NP络合来形成壳。 从下降阶段排除的NPS产生渗透胁迫不平衡,从封装的相中除去水,并将外部PEG相的液滴绘制到壳中以形成双乳液内部。 我们证明分子可以渗透到一些壳,选择性地分配进入内部液滴,并进行反应。 AWE-Somes具有创建功能性,生物相容性的Protocell系统具有重要潜力。

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