Laboratório de Tecnologia e Desenvolvimento de Compósitos e Materiais Poliméricos (LaCoPol), Universidade Federal de Pelotas (UFPel), Campus Capão do Leão s/n, 96010-900, Pelotas, RS, Brazil.
Laboratório de Tecnologia e Desenvolvimento de Compósitos e Materiais Poliméricos (LaCoPol), Universidade Federal de Pelotas (UFPel), Campus Capão do Leão s/n, 96010-900, Pelotas, RS, Brazil.
Carbohydr Polym. 2021 Aug 1;265:118013. doi: 10.1016/j.carbpol.2021.118013. Epub 2021 Apr 2.
This study reports the preparation of microspheres of pectin and magnetite nanoparticles coated by chitosan to encapsulate and deliver drugs. Magnetic-pectin microspheres were obtained by ionotropic gelation followed by polyelectrolyte complexation with chitosan. Characterization data show that magnetite changes the physicochemical and morphological properties of the microspheres compared to the non-magnetic samples. Using metamizole (Mtz) as a drug model, the magnetic microspheres showed appreciable encapsulation efficiency (85 %). Release experiments performed in simulated gastric (pH 1.2) and intestinal (pH 6.8) fluids suggested that the release process is pH-dependent. At pH 6.8, the Mtz release is favored achieving 75 % after 12 h. The application of an external magnetic field increased the release to 91 % at pH 6.8, indicating that the release also is magnetic-dependent. The results suggest that the magnetic microspheres based on pectin/chitosan biopolymers show the potential to be used as a multi-responsive drug delivery system.
本研究报告了一种通过离子凝胶化和壳聚糖的聚电解质复合作用制备包封和输送药物的果胶和磁铁矿纳米粒子微球的方法。与非磁性样品相比,磁性改变了微球的物理化学和形态特性。使用麦角胺(Mtz)作为药物模型,磁性微球表现出可观的包封效率(85%)。在模拟胃液(pH 1.2)和肠液(pH 6.8)中进行的释放实验表明,释放过程是依赖于 pH 的。在 pH 6.8 时,Mtz 的释放更有利,12 小时后达到 75%。在 pH 6.8 时施加外磁场增加了释放到 91%,表明释放也依赖于磁场。结果表明,基于果胶/壳聚糖生物聚合物的磁性微球具有作为多响应药物递送系统的应用潜力。