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Tuning interfacial complexation in aqueous two phase systems with polyelectrolytes and nanoparticles for compound all water emulsion bodies (AWE-somes)

机译:用聚电解质和纳米颗粒调节界面络合,用于化合物所有水乳液体(AWE-Somes)

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摘要

Interfacial complexation between two oppositely charged polymers in aqueous two phase systems (ATPSs) leads to the formation of mechanically robust microcapsules that can be stressed without losing their structural integrity. When a polyelectrolyte (PE) is replaced with a charged nanoparticle (NP), microcapsules with internal compartments can be generated within an encapsulated shell comprising NPs and PEs, named AWE-somes. These shells, made by interfacial complexation between PEs and NPs, are, however, very brittle and can lose their integrity under mechanical stress, potentially limiting their applications. Improved control over the properties and structure of microcapsules over a wide range is needed to enable their broad utilization. In this work, we show that interfacial complexation of a polycation with a mixture of a polyanion and a negatively charged NP in ATPS presents a simple yet versatile method of tuning the structure and properties of microcapsules. We show that internal structure, along with the mechanical robustness and stimuli-responsive properties of microcapsules, can be varied by changing the concentrations of polyanion and NP present in one of the two aqueous phases. Interfacial complexation of PE with mixtures of PE and NP provides a new strategy for controlling and imparting the properties and functionality of AWE-some interfacial membranes for applications in encapsulation and release of active agents and recapitulation of basic functions of living cells.
机译:两种相系统(ATPS)中两个相对带电聚合物之间的界面络合导致机械稳健的微胶囊形成,可以应对而不会失去它们的结构完整性。当用带电纳米颗粒(NP)代替聚电解质(PE)时,可以在包含NPS和PE的包封壳内产生具有内部隔室的微胶囊,名为AWE-Somes。然而,通过PE和NPS之间的界面络合所制作的这些壳,然而,非常脆弱并且可以在机械应力下失去完整性,可能限制它们的应用。需要改进对广泛范围内的微胶囊的性质和结构的控制,以实现其广泛的利用率。在这项工作中,我们表明,用聚阳离子和带负电的NP在ATP中的界面络合具有混合的,呈现了调整微胶囊的结构和性质的简单而多才多艺的方法。我们表明内部结构以及微胶囊的机械稳健性和刺激性特性,可以通过改变两个水相之一存在于其中一种的聚阳离子和NP的浓度来改变。 PE和NP混合物的PE界面络合提供了一种控制和赋予一些界面膜的性质和功能的新策略,用于封装和释放活性剂的应用以及活细胞的基本功能的概念。

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