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Acrylated Chitosan Nanoparticles with Enhanced Mucoadhesion

机译:具有增强的粘膜黏附力的丙烯酸壳聚糖纳米颗粒

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摘要

The aim of this study was to investigate the effect of acrylate modification on the mucoadhesion of chitosan at the nanoscale. Nanoparticles were fabricated from acrylated chitosan (ACS) via ionic gelation with tripolyphosphate and were characterized in terms of size, zeta potential, stability, and nanoparticle yield. Chitosan (CS) nanoparticles, serving as a control, were fabricated using the same procedure. The mucoadhesion of the nanoparticles was evaluated using the flow-through method after different incubation periods. The retention percentages of ACS nanoparticles were found to be significantly higher than those of CS nanoparticles, for all studied time intervals. An additional indication for the increased mucoadhesion of ACS nanoparticles was the increase in particle size obtained from the mucin particle method, in which mucin and nanoparticles are mixed at different ratios. NMR data verified the presence of free acrylate groups on the ACS nanoparticles. Thus, the improved mucoadhesion could be due to a Michael-type addition reaction between the nanoparticles and thiol groups present in mucin glycoprotein, in addition to entanglements and hydrogen bonding. Overall, ACS nanoparticles exhibit enhanced mucoadhesion properties as compared to CS nanoparticles and could be used as vehicles for drug delivery systems.
机译:这项研究的目的是研究丙烯酸改性对纳米级壳聚糖黏膜黏附的影响。纳米粒子由丙烯酸化壳聚糖(ACS)通过三聚磷酸盐的离子凝胶化制备而成,并通过尺寸,ζ电位,稳定性和纳米粒子产率进行表征。使用相同的步骤制备了壳聚糖(CS)纳米粒子作为对照。在不同的孵育时间后,使用流通法评估纳米颗粒的粘膜粘附性。在所有研究的时间间隔内,发现ACS纳米颗粒的保留百分比显着高于CS纳米颗粒。 ACS纳米颗粒粘膜粘附性增加的另一个迹象是,从粘蛋白颗粒法获得的粒径增加,其中粘蛋白和纳米颗粒以不同比例混合。 NMR数据证实了ACS纳米颗粒上存在游离丙烯酸酯基。因此,除了缠结和氢键之外,改善的粘膜粘附性还可以归因于纳米颗粒与粘蛋白糖蛋白中存在的巯基之间的迈克尔型加成反应。总体而言,与CS纳米颗粒相比,ACS纳米颗粒表现出增强的粘膜粘附特性​​,可以用作药物输送系统的载体。

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