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A Design Full of Holes: Functional Nanofilm-Coated Microdomains in Alginate Hydrogels

机译:一种充满漏洞的设计:藻酸盐水凝胶中功能性纳米膜涂层的微区。

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摘要

This study demonstrates the successful manufacture and functional characterization of alginate hydrogels containing a variety of encapsulates within polyelectrolyte multilayer-coated micropores. These microporous alginate (MPA) hydrogels are prepared via one-step internal ionotropic gelation of the alginate using polyelectrolyte multilayer-coated CaCO3 microspheres along with the weak acid glucono-δ-lactone. Here, successful encapsulation of a model macromolecule and fluorescent nanoparticles within microcapsules—distributed throughout the larger alginate hydrogel—is confirmed with confocal microscopy, while the porous morphology of the MPA hydrogels is examined with scanning electron microscopy. Hydrogels constructed with uncoated CaCO3 microspheres release their contents into the surrounding environment, while those constructed with polyelectrolyte multilayer-coated CaCO3 microspheres retain the materials within the pores. MPA hydrogels containing the model enzyme glucose oxidase retained activity and are capable of reacting with small molecules from the external environment. The ability to encapsulate an assortment of functional materials within a moldable, biocompatible alginate matrix gives this approach great flexibility and potential in a wide variety of biomedical applications.
机译:这项研究证明了藻酸盐水凝胶的成功制造和功能表征,该藻酸盐水凝胶在聚电解质多层涂层的微孔中含有多种包囊。这些微孔藻酸盐(MPA)水凝胶是通过使用聚电解质多层涂层的CaCO3微球与弱酸葡萄糖酸-δ-内酯对藻酸盐进行一步一步内部电离凝胶化制备的。在这里,通过共聚焦显微镜证实了模型大分子和荧光纳米颗粒在微囊内的成功封装(分布在整个较大的藻酸盐水凝胶中),而MPA水凝胶的多孔形态则通过扫描电子显微镜检查。用未包覆的CaCO3微球构成的水凝胶将其内含物释放到周围的环境中,而用聚电解质多层包覆的CaCO3微球构成的水凝胶则将材料保留在孔中。含有模型酶葡萄糖氧化酶的MPA水凝胶保留了活性,并能够与来自外部环境的小分子反应。将各种功能材料封装在可塑的,生物相容的藻酸盐基质中的能力为该方法提供了极大的灵活性,并在各种生物医学应用中具有潜力。

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