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Permeability of S-layer coated polyelectrolyte capsules

机译:S层涂覆的聚电解质胶囊的渗透性

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Hollow polyelectrolyte capsules have recently attracted a wide interest as a new class of drug delivery vehicles. They can be fabricated by means of the Layer by Layer technique which is simple, and versatile and allows the obtainment of programmable shell composition, diameters, thickness, and permeability. Hollow capsules, ranging in size from tens of nanometers to tens of microns, can be developed on the surface of spherical templates subsequently removed under acidic conditions. Their inner volume can be loaded with a wide variety of therapeutic agents and their surface functionalised with biomolecules to optimize drug targeting. To this regard, crystalline bacterial cell surface layer (S-layer) represent a promising solution to introduce an array of ordered functional groups on the surface of the capsule shell to which biomolecules can be covalently bound. In this work polyelectrolyte capsules with the architecture (PAH/PSS)4 Slayer were developed and their permeability to dextran conjugated to the fluorescent dye FITC investigated. Results show a successful stepwise assembly process and encapsulation of the tested fluorescent complex inside of the polyelectrolyte capsules putting in evidence the high potential of the developed system for the encapsulation and targeted release of therapeutic agents.
机译:中空聚电解质胶囊最近作为一类新型的药物递送载体引起了广泛的兴趣。它们可以通过简单,通用的逐层技术进行制造,并允许获得可编程的壳体组成,直径,厚度和磁导率。可以在球形模板的表面上形成大小从几十纳米到几十微米不等的空心胶囊,随后在酸性条件下将其除去。它们的内部容积可以装载多种治疗剂,其表面可以用生物分子功能化以优化药物靶向。就这一点而言,结晶细菌细胞表面层(S层)代表了一种有前途的解决方案,可以在生物分子可以共价结合的胶囊壳的表面上引入一系列有序的官能团。在这项工作中,开发了具有(PAH / PSS)4 Slayer结构的聚电解质胶囊,并研究了其与荧光染料FITC共轭的葡聚糖的渗透性。结果显示成功的逐步组装过程和聚电解质胶囊内部被测荧光复合物的封装,这证明开发的系统具有封装治疗剂和靶向释放的巨大潜力。

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