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首页> 外文期刊>Macromolecular Research >Insulin-incorporated Chitosan Nanoparticles Based on Polyelectrolyte Complex Formation
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Insulin-incorporated Chitosan Nanoparticles Based on Polyelectrolyte Complex Formation

机译:基于聚电解质复合物形成的胰岛素结合壳聚糖纳米粒子

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Insulin-incorporated nanoparticles were prepared by polyelectrolyte complex formation using low-molecular weight water soluble chitosan (LMWSC). Insulin-incorporated nanoparticles showed spherical shapes with a particle size of approximately 200 nm. The average particle size, drug content and loading efficiency increased with increasing insulin feed. The zeta potential decreased with increasing insulin feed, indicating that the electrostatic interaction increased with increasing insulin feed. At ~1H nuclear magnetic resonance (NMR) spectra, insulin and LMWSC had intrinsic peaks while the peaks of the nanoparticles were similar to LMWSC itself at D2O. However, the specific peaks for insulin appeared as a result of the breakdown of nanoparticles using DC1. When polyelectrolyte complex had dissociated, fluorescein isothiocyanate (FITC)-labeled insulin in the nanoparticles showed similar UV absorption peaks to FITC-labeled insulin only. At the release study, insulin was released continuously from the nanoparticles over 120 h at all formulations. Higher insulin contents induced a decrease in the rate of insulin released from nanoparticles. Consequently, LMWSC and insulin successively formed polyelectrolyte complexes as a nanocarriers and LMWSC can be considered a good candidate for insulin delivery.
机译:通过使用低分子量水溶性壳聚糖(LMWSC)形成聚电解质复合物来制备结合有胰岛素的纳米颗粒。并入胰岛素的纳米颗粒显示出球形,其粒径约为200 nm。平均粒径,药物含量和装载效率随胰岛素饲料的增加而增加。 zeta电位随着胰岛素进料的增加而降低,表明静电相互作用随胰岛素进料的增加而增加。在〜1H核磁共振(NMR)谱图中,胰岛素和LMWSC具有固有峰,而在D2O处,纳米颗粒的峰类似于LMWSC本身。但是,胰岛素的特定峰是使用DC1分解纳米颗粒的结果。当聚电解质复合物解离后,纳米颗粒中的异硫氰酸荧光素(FITC)标记的胰岛素显示出与仅FITC标记的胰岛素相似的UV吸收峰。在释放研究中,所有制剂均在120小时内从纳米颗粒连续释放胰岛素。较高的胰岛素含量导致纳米颗粒释放的胰岛素速率降低。因此,LMWSC和胰岛素相继形成作为纳米载体的聚电解质复合物,LMWSC被认为是胰岛素输送的良好候选者。

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