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Effect of poly(ethylene glycol) on insulin stability and cutaneous cell proliferation in vitro following cytoplasmic delivery of insulin-loaded nanoparticulate carriers – A potential topical wound management approach

机译:聚(乙二醇)对胰岛素纳米颗粒载体胰岛素递送后胰岛素稳定性和皮肤细胞增殖的影响 - 潜在的局部伤口管理方法

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Abstract We describe the development of a nanoparticulate system, with variation of poly(ethylene glycol) (PEG) content, capable of releasing therapeutic levels of bioactive insulin for extended periods of time. Recombinant human insulin was encapsulated in poly( d , l -lactide- co -glycolide) nanoparticles, manufactured with variation in poly(ethylene glycol) content, and shown to be stable for 6days using SDS-PAGE, western blot and MALDI MS. To determine if insulin released from this sustained release matrix could stimulate migration of cell types normally active in dermal repair, a model wound was simulated by scratching confluent cultures of human keratinocytes (HaCaT) and fibroblasts (Hs27). Although free insulin was shown to have proliferative effect, closure of in vitro scratch fissures was significantly faster following administration of nano-encapsulated insulin. This effect was more pronounced in HaCaT cells when compared to Hs27 cells. Variation in PEG content had the greatest effect on NP size, with a lesser influence on scratch closure times. Our work supports a particulate uptake mechanism that provides for intracellular insulin delivery, leading to enhanced cell proliferation. When placed into an appropriate topical delivery vehicle, such as a hydrogel, the extended and sustained topical administration of active insulin delivered from a nanoparticulate vehicle shows promise in promoting tissue healing. Graphical abstract Display Omitted
机译:摘要我们描述了纳米颗粒系统的发展,具有聚(乙二醇)(PEG)含量的变化,能够在延长的时间内释放生物活性胰岛素的治疗水平。重组人胰岛素被包封在聚(D,L-氯化物 - Co-乙酰乙酰基)纳米颗粒中,以聚(乙二醇)含量的变化制备,并显示使用SDS-PAGE,Western印迹和MALDI MS的6天稳定。为了确定从该持续释放基质中释放的胰岛素可以刺激正常活性的细胞类型在真皮修复中的迁移,通过刮伤人角蛋白细胞(HACAT)和成纤维细胞的汇合培养(HS27)来模拟模型伤口。虽然证明了自由胰岛素具有增殖效应,但在纳米包封的胰岛素施用后,体外划痕裂隙的闭合明显更快。与HS27细胞相比,这种效果在HaCAT细胞中更明显。 PEG含量的变化对NP尺寸的影响最大,对划痕时的影响较小。我们的作品支持颗粒状摄取机制,提供细胞内胰岛素递送,导致细胞增殖增强。当置于诸如水凝胶的适当局部递送型载体中时,从纳米颗粒车辆递送的延长和持续的局部局部施用活性胰岛素施用在纳米颗粒车辆中呈现出促进组织愈合的承诺。省略了图形抽象显示

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