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首页> 外文期刊>International Journal of Nanomedicine >Overcoming Multiple Absorption Barrier for Insulin Oral Delivery Using Multifunctional Nanoparticles Based on Chitosan Derivatives and Hyaluronic Acid
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Overcoming Multiple Absorption Barrier for Insulin Oral Delivery Using Multifunctional Nanoparticles Based on Chitosan Derivatives and Hyaluronic Acid

机译:基于壳聚糖衍生物和透明质酸的多功能纳米粒子克服胰岛素口腔递送的多重吸收屏障

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Background: Although dynamics and uses of modified nanoparticles (NPs) as orally administered macromolecular drugs have been researched for many years, measures of molecule stability and aspects related to important transport-related mechanisms which have been assessed in vivo remain as relatively under characterized. Thus, our aim was to develop a novel type of oral-based delivery system for insulin and to overcome barriers to studying the stability, transport mechanisms, and efficacy in vivo of the delivery system. Methods: NPs we developed and tested were composed of insulin (INS), dicyandiamide-modified chitosan (DCDA-CS), cell-penetrating octaarginine (r8), and hydrophilic hyaluronic acid (HA) and were physically constructed by electrostatic self-assembly techniques. Results: Compared to free-insulin, levels of HA-DCDA-CS-r8-INS NPs were retained at more desirable measures of biological activity in our study. Further, our assessments of the mechanisms for NPs suggested that there were high measures of cellular uptake that mainly achieved through active transport via lipid rafts and the macropinocytosis pathway. Furthermore, investigations of NPs indicated their involvement in caveolae-mediated transport and in the DCDA-CS-mediated paracellular pathway, which contributed to increasing the efficiency of sequential transportation from the apical to basolateral areas. Accordingly, high efficiency of absorption of NPs in situ for intestinal loop models was realized. Consequently, there was a strong induction of a hypoglycemic effect in diabetic rats of NPs via orally based administrations when compared with measures related to free insulin. Conclusion: Overall, the dynamics underlying and influenced by HA-DCDA-CS-r8-INS may hold great promise for stability of insulin and could help overcome interference by the epithelial barrier, and thus showing a great potential to improve the efficacy of orally related treatments.
机译:背景:虽然已经研究了改性纳米颗粒(NPS)的动力学和用途,但已经研究了多年来,分子稳定性和与在体内评估的重要交通相关机制相关的各个方面的措施仍然在其特征上仍然存在。因此,我们的目标是开发一种新型的胰岛素的口腔递送系统,并克服研究送货系统体内稳定性,运输机制和功效的障碍。方法:我们开发和测试的NPS由胰岛素(INS),双氰胺改性的壳聚糖(DCDA-CS),细胞穿透性Octaarginine(R8)和亲水性透明质酸(HA)组成,并通过静电自组装技术进行物理构建。结果:与自由胰岛素相比,在我们研究中保留了HA-DCDA-CS-R8-INS NPS的水平,以我们研究的生物活性测定。此外,我们对NPS机制的评估表明,具有通过脂质筏和大丙菌病途径的主动运输主要实现的细胞吸收措施。此外,NPS的调查表明它们参与Caveolae介导的运输和DCDA-CS介导的静脉曲轨,这有助于提高从顶端到基石区域的顺序运输效率。因此,实现了NPS原位对肠道肠道模型的高效率的高效率。因此,与与自由胰岛素相关的措施相比,通过基于口服给药患NPS的糖尿病大鼠的低血糖作用强烈诱导。结论:总体而言,HA-DCDA-CS-R8-INS的潜在和影响的动态可能对胰岛素的稳定性具有很大的希望,并且可以帮助克服上皮屏障的干扰,从而呈现出改善口头相关的疗效的潜力治疗。

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