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Advanced Subcompartmentalized Microreactors: Polymer Hydrogel Carriers Encapsulating Polymer Capsules and Liposomes

机译:先进的子组件化微反应器:聚合物水凝胶载体包封聚合物胶囊和脂质体

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摘要

The design of compartmentalized carriers for advanced drug delivery systems or artificial cells and organelles is of interest for biomedical applications. Herein, a polymer carrier microreactor that contains two different classes of subcompartments, multilayered polymer capsules and liposomes, is presented. 50 nm-diameter liposomes and 300 nm-diameter polymer capsules are encapsulated into a larger polymer carrier capsule, demonstrating control over the spatial positioning of the subcompartments, which are either 'membrane-associated' or 'free-floating' in the aqueous interior. Selective and spatially dependent degradation of the 300 nm-diameter subcompartments (without destroying the structural integrity of the enzyme-loaded liposomes) is also shown, by performing an encapsulated enzymatic reaction using the liposomal subcompartments. These findings cover several important aspects toward the development of engineered compartmentalized carrier vessels for the creation of artificial cell mimics or advanced therapeutic delivery systems.
机译:用于高级药物递送系统或人造细胞和细胞器的隔间间载体的设计对生物医学应用感兴趣。这里,呈现了含有两种不同类别的子组分,多层聚合物胶囊和脂质体的聚合物载体微反应器。将50nm直径的脂质体和300nm-直径的聚合物胶囊包封在较大的聚合物载体胶囊中,证明对子组件的空间定位进行控制,其是“膜相关”或水性内部的“自由浮动”。还示出了通过使用脂质体子组分进行包封的酶促反应,还示出了300nm直径子组分的选择性和空间依赖性降解(不破坏酶负载脂质体的结构完整性)。这些发现涵盖了用于开发工程舱内化载体的几个重要方面,用于创建人造细胞模拟物或先进的治疗递送系统。

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