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Preparation and in vitro Evaluation of Linear and Star-branched PLGA Nanoparticles for Insulin Delivery

机译:线性和星形支链PLGA纳米粒子的胰岛素制备及体外评价

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Biodegradable nanoparticles,as drug delivery paradigms,have been extensively used for delivery of a wide range of small molecules as well as macromolecules,such as peptides,proteins,and genes.The morphological modification may improve the physicochemical characteristics of the biodegradable polymers.In the current investigation,the synthesis and characterization of linear,poly(D,L-lactide-co-glycolide)(PLGA)-poly(ethy-lene glycol)(PEG-PLGA),star-branched beta-cyclodextrin-PLGA(beta-CD-PLGA),and glucose-PLGA(Glu-PLGA)copolymers containing insulin as a model peptide drug have been reported.Linear and star-branched copolymers of PLGA were synthesized by bulk melt polymerization of the lactones(lactide and glycolide)in the presence of PEG,glucose,or p-CD using Sn-octoate as catalyst.Nanoparticles were prepared by a modified(w1/o/w2)double emulsion method.Bovine insulin was successfully encapsulated into the linear and star-branched PLGA nanoparticles with retention of insulin stability and the nanoparticles preparation process was optimized to reduce the burst effect and provide in vitro sustained release.The average particle size of samples was 120-355 nm.The cumulative amount of 65-84% insulin was released from the samples after 24 days.The yield of encapsulation of insulin was superior to 95%.Based on these findings,it is suggested that the novel PLGA nanoparticles can be used as a carrier for prolonged delivery of protein-peptide drugs.
机译:可生物降解的纳米颗粒作为药物的输送范例,已被广泛用于输送各种小分子以及大分子,如肽,蛋白质和基因。形态修饰可能会改善可生物降解的聚合物的理化特性。线性,聚(D,L-丙交酯-乙交酯)(PLGA)-聚(乙稀乙二醇)(PEG-PLGA),星形支链β-环糊精-PLGA(β-已经报道了以胰岛素为模型肽药物的CD-PLGA)和葡萄糖-PLGA(Glu-PLGA)共聚物。通过在聚乳酸中内酯(丙交酯和乙交酯)的本体熔融聚合反应合成了PLGA的线性和星形支化共聚物。以辛酸辛酸酯为催化剂,存在PEG,葡萄糖或p-CD。通过改进的(w1 / o / w2)双乳化法制备纳米颗粒。牛胰岛素成功地包封在线性和星形分支的PLGA纳米颗粒中胰岛素稳定性和优化了纳米颗粒的制备工艺,以减少突释作用并提供体外持续释放。样品的平均粒径为120-355 nm.24天后,样品中累积释放了65-84%的胰岛素。胰岛素的包封率超过95%。基于这些发现,表明新型PLGA纳米颗粒可用作载体来延长蛋白肽药物的递送。

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