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首页> 外文期刊>International Journal of Nanomedicine >In vivo evaluation of a conjugated poly(lactide-ethylene glycol) nanoparticle depot formulation for prolonged insulin delivery in the diabetic rabbit model
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In vivo evaluation of a conjugated poly(lactide-ethylene glycol) nanoparticle depot formulation for prolonged insulin delivery in the diabetic rabbit model

机译:糖尿病兔模型中共轭聚(丙交酯-乙二醇)纳米颗粒长效制剂在延长胰岛素输送中的体内评价

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Abstract: Poly(ethylene glycol) (PEG) and polylactic acid (PLA)-based copolymeric nanoparticles were synthesized and investigated as a carrier for prolonged delivery of insulin via the parenteral route. Insulin loading was simultaneously achieved with particle synthesis using a double emulsion solvent evaporation technique, and the effect of varied PEG chain lengths on particle size and insulin loading efficiency was determined. The synthesized copolymer and nanoparticles were analyzed by standard polymer characterization techniques of gel permeation chromatography, dynamic light scattering, nuclear magnetic resonance, and transmission electron microscopy. In vitro insulin release studies performed under simulated conditions provided a near zero-order release pattern up to 10 days. In vivo animal studies were undertaken with varied insulin loads of nanoparticles administered subcutaneously to fed diabetic rabbits and, of all doses administered, nanoparticles containing 50 IU of insulin load per kg body weight controlled the blood glucose level within the physiologically normal range of 90–140 mg/dL, and had a prolonged effect for more than 7 days. Histopathological evaluation of tissue samples from the site of injection showed no signs of inflammation or aggregation, and established the nontoxic nature of the prepared copolymeric nanoparticles. Further, the reaction profiles for PLA-COOH and NH2-PEGDA-NH2 were elucidated using molecular mechanics energy relationships in vacuum and in a solvated system by exploring the spatial disposition of various concentrations of polymers with respect to each other. Incorporation of insulin within the polymeric matrix was modeled using Connolly molecular surfaces. The computational results corroborated the experimental and analytical data. The ability to control blood glucose levels effectively coupled with the nontoxic behavior of the nanoparticles indicates that these nanoparticles are a potential candidate for insulin delivery.
机译:摘要:合成了基于聚乙二醇(PEG)和聚乳酸(PLA)的共聚纳米颗粒,并研究了其为通过肠胃外途径延长胰岛素输送的载体。使用双乳液溶剂蒸发技术通过颗粒合成同时实现了胰岛素负载,并确定了不同PEG链长对粒度和胰岛素负载效率的影响。合成的共聚物和纳米粒子通过凝胶渗透色谱,动态光散射,核磁共振和透射电子显微镜的标准聚合物表征技术进行分析。在模拟条件下进行的体外胰岛素释放研究提供了长达零天的近零级释放模式。进行了体内动物研究,对皮下注射给糖尿病兔子的胰岛素负荷量各不相同,在所有剂量下,每公斤体重含有50 IU胰岛素负荷量的纳米粒子将血糖水平控制在90-140的生理正常范围内毫克/分升,并具有超过7天的延长效果。来自注射部位的组织样品的组织病理学评估显示没有炎症或聚集的迹象,并且确定了所制备的共聚纳米颗粒的无毒性质。此外,通过探索各种浓度的聚合物相对于彼此的空间布置,在真空中和在溶剂化体系中使用分子力学能量关系,阐明了PLA-COOH和NH2-PEGDA-NH2的反应曲线。使用Connolly分子表面对聚合物基质中胰岛素的掺入进行建模。计算结果证实了实验和分析数据。有效控制血糖水平的能力与纳米颗粒的无毒行为相结合,表明这些纳米颗粒是胰岛素递送的潜在候选者。

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