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Folate-decorated PLGA nanoparticles as a rationally designed vehicle for the oral delivery of insulin

机译:叶酸修饰的PLGA纳米颗粒可作为口服胰岛素的合理设计载体

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Aims: The present study reports a novel approach for enhancing the oral absorption and hypoglycemic activity of insulin via encapsulation in folate-(FA) coupled polyethylene glycol (PEG)ylated polylactide-co-glycolide (PLGA) nanoparticles (NPs; FA-PEG-PLGA NPs). Materials & methods: Insulin-loaded FA-PEG-PLGA NPs (size 260 nm; insulin loading 6.5% [w/w]; encapsulation efficiency: 87.0 ± 1.92%) were prepared by double-emulsion solvent evaporation method. The bioavailability and hypoglycemic activity of orally administered FA–insulin NPs were studied in diabetic rats. Results & conclusion: FA-PEG-PLGA NPs (50 U/kg) exhibited a twofold increase in the oral bioavailability (double hypoglycemia) without any hypoglycemic shock as compared to subcutaneously administered standard insulin solution. Insulin NPs maintained a continual blood glucose level for 24 h, which, however, was transient (<8 h) in the case of subcutaneous insulin and associated with severe hypoglycemic shock. Overall, we have developed a patient-compliant, oral nanoformulation of insulin, once-daily administration of which would be sufficient to control diabetes for at least 24 h.
机译:目的:本研究报告了一种通过封装在叶酸-(FA)偶联的聚乙二醇(PEG)化聚丙交酯-共-乙交酯(PLGA)纳米颗粒(NPs)中来增强胰岛素的口服吸收和降血糖活性的新方法。 PLGA NP)。材料与方法:采用双乳化溶剂蒸发法制备了载有胰岛素的FA-PEG-PLGA NPs(尺寸260 nm;载有6.5%[w / w];包封效率:87.0±1.92%)。在糖尿病大鼠中研究了口服FA-胰岛素NPs的生物利用度和降血糖活性。结果与结论:与皮下注射标准胰岛素溶液相比,FA-PEG-PLGA NP(50 U / kg)的口服生物利用度增加了两倍(双低血糖),而没有任何低血糖冲击。胰岛素NPs维持连续24小时的血糖水平,但是,在皮下胰岛素的情况下是短暂的(<8 h),并伴有严重的降血糖休克。总的来说,我们已经开发出了一种符合患者需求的口服纳米胰岛素制剂,每天一次,足以控制糖尿病至少24小时。

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