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Engineering asymmetric vesicles

机译:工程不对称囊泡

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摘要

Vesicles are bilayers of lipid molecules enclosing a fixed volume of aqueous solution. Ubiquitous in cells, they can be produced in vitro to study the physical properties of biological membranes and for use in drug delivery and cosmetics. Biological membranes are, in fact, a fluid mosaic of lipids and other molecules; the richness of their chemical and mechanical properties in vivo is often dictated by an asymmetric distribution of these molecules. Techniques for vesicle preparation have been based on the spontaneous assembly of lipid bilayers, precluding the formation of such asymmetric structures. Partial asymmetry has been achieved only with chemical methods greatly restricting the study of the physical and chemical properties of asymmetric vesicles and their use in potential applications for drug delivery. Here we describe the systematic engineering of unilamellar vesicles assembled with two independently prepared monolayers; this process produces asymmetries as high as 95%. We demonstrate the versatility of our method by investigating the stability of the asymmetry. We also use it to engineer hybrid structures comprised of an inner leaflet of diblock copolymer and an independent lipid outer leaflet. [References: 24]
机译:囊泡是脂质分子的双层,包围固定体积的水溶液。它们在细胞中无处不在,可以在体外生产以研究生物膜的物理特性,并用于药物递送和化妆品。实际上,生物膜是脂质和其他分子的流体镶嵌体。它们体内化学和机械特性的丰富性通常取决于这些分子的不对称分布。囊泡制备技术已基于脂质双层的自发组装,从而排除了这种不对称结构的形成。仅通过化学方法实现了部分不对称,这极大地限制了对不对称囊泡的物理和化学性质及其在药物递送的潜在应用中的应用的研究。在这里,我们描述了两个独立准备的单层组装的单层囊泡的系统工程。此过程会产生高达95%的不对称性。我们通过研究不对称性的稳定性证明了我们方法的多功能性。我们还使用它来设计由二嵌段共聚物的内部小叶和独立的脂质外部小叶组成的杂化结构。 [参考:24]

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