首页> 外文期刊>Carbohydrate Polymers: Scientific and Technological Aspects of Industrially Important Polysaccharides >Green pH/magnetic sensitive hydrogels based on pineapple peel cellulose and polyvinyl alcohol: synthesis, characterization and naringin prolonged release
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Green pH/magnetic sensitive hydrogels based on pineapple peel cellulose and polyvinyl alcohol: synthesis, characterization and naringin prolonged release

机译:基于菠萝剥离纤维素和聚乙烯醇的绿色pH /磁敏水凝胶:合成,表征和Naringin延长释放

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摘要

This study develops a green method to fabricate pH/magnetic sensitive hydrogels based on pineapple peel carboxymethyl cellulose (PCMC), regenerated nanocellulose (rPPNc), and polyvinyl alcohol (PVA), accompanied by in situ incorporation of Fe3O4. The rPPNc was obtained through a two-stage method involving ionic liquid swelling followed by dilute sulfuric acid hydrolysis. The SEM images revealed the porous structure of the hydrogels. The hydrogels showed a magnetic responsive behavior due to incorporation of Fe3O4, and an enhanced thermal stability at high temperature due to incorporations of rPPNc and Fe3O4. The hydrogels displayed a pH-dependent swelling behavior and swelled more due to incorporation of rPPNc. In addition, rPPNc enhanced the naringin loading and entrapment efficiency of the hydrogels, showing an optimum value at 2% addition. The naringin can be gradually released from the hydrogels, which followed Fickian diffusion model. In summary, this work provided a relatively green approach for producing nanocellulose. The prepared hydrogels can be served as promising candidate materials for drug delivery system due to the characteristics of biocompatibility, pH and magnetic sensitivity.
机译:该研究开发了一种基于菠萝剥离羧甲基纤维素(PCMC),再生纳米纤维素(RPPNC)和聚乙烯醇(PVA)的pH /磁性敏感水凝胶的绿色方法,伴随于FE3O4的原位掺入。通过涉及离子液体溶胀的两级方法获得RPPNC,然后稀硫酸水解。 SEM图像揭示了水凝胶的多孔结构。由于掺入RPPNC和Fe3O4,水凝胶由于掺入Fe3O4,并且在高温下提高了热稳定性,水凝胶表达了磁性响应性行为。由于掺入RPPNC,水凝胶显示出pH依赖性肿胀行为并更溶胀。此外,RPPNC增强了水凝胶的鼻腔加载和夹带效率,显示出2%的最佳值。鼻腔可以从水凝胶逐渐释放,然后遵循Fickian扩散模型。总之,这项工作提供了一种纳米纤维素的相对绿色的方法。由于生物相容性,pH和磁敏度的特征,制备的水凝胶可以作为药物输送系统的候选材料。

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