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A synthetic mimic of the secretory granule for drug delivery. (see comments)

机译:用于分泌药物的分泌颗粒的合成模拟物。 (看评论)

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Secretory cells contain submicroscopic granules composed of a polyanionic polymer network that is collapsed owing to the presence of hydronium ions and weak base cations. The network is encapsulated within a lipid membrane, and functions as a vehicle for the osmotically inert storage of a variety of granule-bound endogenous mediator species, such as histamine, serotonin and proteases. These species are excreted from the granule and thence from the cell in response to external biochemical signals. Hydrogels that swell and shrink in response to external stimuli might serve as synthetic analogues of secretory granules. Here we describe the systematic engineering of multi-component, environmentally responsive hydrogel microspheres, coated with a lipid bilayer to mimic more closely the natural secretory granule. These microspheres exhibit pH- and ion-dependent volume phase transitions and ion-sensitive exchange of bound cations when the encapsulating lipid membrane is porated. We stimulated poration electrically in individual microgel particles immobilized and manipulated with a micropipette. This system could find use for the triggered release of encapsulated drugs in the body.
机译:分泌细胞包含由聚阴离子聚合物网络组成的亚微观颗粒,由于存在水合氢离子和弱碱阳离子,其被破坏了。该网络被封装在脂质膜中,并作为渗透惰性存储各种与颗粒结合的内源性介质,例如组胺,5-羟色胺和蛋白酶的载体。响应外部生物化学信号,这些物质从颗粒中排出,然后从细胞中排出。响应外部刺激而溶胀和收缩的水凝胶可以用作分泌颗粒的合成类似物。在这里,我们描述了多组分,对环境敏感的水凝胶微球的系统工程,该微球涂有脂质双层以更紧密地模拟天然分泌颗粒。当包裹脂质膜时,这些微球表现出pH和离子依赖性的体积相变和结合阳离子的离子敏感交换。我们在固定和使用微量移液器操作的单个微凝胶颗粒中刺激电穿孔。该系统可用于触发封装药物在体内的释放。

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