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Preparation and properties of core-shell alginate-carboxymethylchitosan hydrogels

机译:核壳藻酸盐-羧甲基壳聚糖水凝胶的制备及性能

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BACKGROUND: Hydrogels of alginate (ALG) with partially carboxymethylated chitosan (CMCHI) have been produced for drug delivery, based on the interactions between the negative groups and an ionic crosslinker. In the present work, CMCHI was used to evaluate the influence of amino groups that are positively charged at pH = 4 and 6 on the ALG-CMCHI core-shell hydrogel preparation. An ANOVA statistics tool was used to evaluate the effect of composition, pH and chitosan chemical nature on the morphology and swelling properties of the hydrogels in simulated gastric fluid (SGF) and simulated intestinal fluid (SIF). RESULTS: The ALG-CMCHI core-shell hydrogels presented smaller (ca 2.3 μm) and more homogeneous microparticles than those with unmodified chitosan (ca 5.5 μm). The ALG-CMCHI hydrogels showed higher thermal stability and lower degree of swelling in SGF (314%) compared to those with chitosan (708%), since in the former hydrogels the protective layers that surround the particles are negatively charged. CONCLUSION: CMCHI can replace chitosan in the production of core-shell hydrogels with improved properties since the negative charge surrounding the ALG-CMCHI particles favours a lower degree of swelling. The results point out a possible prevention of burst release in SGF, sustaining the swelling ability of the ALG-CMCHI core-shell hydrogels in SIF, promising appropriate drug release.
机译:背景:海藻酸盐(ALG)与部分羧甲基化壳聚糖(CMCHI)的水凝胶已基于负性基团与离子交联剂之间的相互作用而制备,用于药物输送。在目前的工作中,CMCHI用于评估在pH = 4和6时带正电荷的氨基对ALG-CMCHI核-壳水凝胶制剂的影响。使用ANOVA统计工具评估组成,pH和壳聚糖化学性质对模拟胃液(SGF)和模拟肠液(SIF)中水凝胶的形态和溶胀特性的影响。结果:ALG-CMCHI核-壳水凝胶比未修饰的壳聚糖(约5.5μm)具有更细的颗粒(约2.3μm)和更均匀的微粒。与壳聚糖(708%)相比,ALG-CMCHI水凝胶在SGF(314%)中显示出更高的热稳定性和更低的溶胀度,因为在前一种水凝胶中,围绕颗粒的保护层带负电。结论:由于ALG-CMCHI颗粒周围的负电荷有利于降低溶胀度,因此CMCHI可以代替壳聚糖生产具有改善性能的核壳水凝胶。结果表明可能阻止SGF的爆发释放,维持SIF中ALG-CMCHI核壳水凝胶的溶胀能力,并有望适当释放药物。

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