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Hydrophobic ion pairing of an insulin-sodium deoxycholate complex for oral delivery of insulin

机译:胰岛素-脱氧胆酸钠复合物的疏水离子对用于口服胰岛素

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摘要

Insulin was complexed with sodium deoxycholate to form an insulin-sodium deoxycholate complex (Ins-SD-Comp) using an hydrophobic ion pairing method in aqueous phase to enhance the liposolubility of insulin. In order to obtain the maximal complexation efficiency, the molar ratio of sodium deoxycholate to insulin was found. The zeta potential method was used to confirm the optimal ratio for formation of Ins-SD-Comp. The structural characteristics of Ins-SD-Comp were assessed using the Fourier transform infrared method. The apparent partition coefficient of insulin increased upon the formation of Ins-SD-Comp. Based on the preliminary study, Ins-SD-Comp was encapsulated into poly(lactide-co-glycolide) (PLGA) nanoparticles using an emulsion solvent diffusion method. The maximal encapsulation efficiency of Ins-SD-Comp into PLGA nanoparticles was 93.6% ± 2.81%, drug loading was about 4.8% ± 0.32%, and the mean diameter of the nanoparticles was 278 ± 13 nm. Biological activity and in vivo results revealed that the bioactivity of insulin was not destroyed during the preparation process. Ins-SD-Comp-loaded PLGA nanoparticles have the potential to reduce serum glucose levels and increase the oral bioavailability of insulin.
机译:使用疏水性离子配对方法在水相中将胰岛素与脱氧胆酸钠混合,形成胰岛素-脱氧胆酸钠复合物(Ins-SD-Comp),以增强胰岛素的脂溶性。为了获得最大的络合效率,发现了脱氧胆酸钠与胰岛素的摩尔比。用ζ电位法确定形成Ins-SD-Comp的最佳比例。 Ins-SD-Comp的结构特征使用傅立叶变换红外法进行评估。胰岛素的表观分配系数随着Ins-SD-Comp的形成而增加。基于初步研究,使用乳液溶剂扩散法将Ins-SD-Comp封装到聚丙交酯-乙交酯共聚物(PLGA)纳米粒子中。 Ins-SD-Comp对PLGA纳米粒子的最大包封效率为93.6%±2.81%,载药量约为4.8%±0.32%,纳米粒子的平均直径为278±13 nm。生物活性和体内结果表明,胰岛素的生物活性在制备过程中没有被破坏。装有Ins-SD-Comp的PLGA纳米颗粒具有降低血清葡萄糖水平和增加胰岛素口服生物利用度的潜力。

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