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Effects of cellulose nanocrystal polymorphs and initial state of hydrogels on swelling and drug release behavior of alginate-based hydrogels

机译:纤维素纳米晶多晶型物和水凝胶初始状态对藻酸盐水凝胶肿胀及药物释放行为的影响

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In this work, composite hydrogels composed of sodium alginate (SA) and two crystal structures of cellulose nanocrystals (CNCs) I and II were prepared, respectively. Impacts of CNC polymorphs and initial state of the hydrogels on the swelling kinetics were analyzed on the basis of power law and Schott's second-order kinetic equation. It was found that the swelling ratio of SA/1 CNC II was the largest, and it showed the non-Fickian diffusion behavior, while SA and SA/1 CNC I exhibited the Fickian diffusion behavior. And the swelling ratio of soaked hydrogels was great larger than that of the rinsed ones, but the swelling mechanism of the two situations was almost the same, that is, the Fickian diffusion behavior. In addition, drug release tests were performed in deionized water using chloramphenicol as a model drug. The results indicated that for the soaked hydrogels, the drug loading was high, while the release rate was slow. The reason for the higher loading but slower release rate was also discussed based on the morphology of hydrogels. On the other hand, the addition of CNC II into SA brought the high drug loading and slow release rate. It resulted from the strong hydrophilicity of CNC II and the strong interaction between drug and SA/CNC II hydrogels. This work could give a new promise for tuning the swelling and drug release behavior of hydrogels by varying the initial state of hydrogels or the crystal form of CNCs.
机译:在这项工作中,分别制备了由藻酸钠(SA)和纤维素纳米晶体(CNC)I和II晶体结构组成的复合水凝胶。基于电力法和肖特二阶动力学方程,分析了CNC多晶型物和水凝胶初始状态对肿胀动力学的影响。结果发现,SA / 1 CNC II的溶胀比最大,并且显示出非Fickian扩散行为,而SA和SA / 1 CNC I表现出Fickian扩散行为。浸泡水凝胶的溶胀比大于冲洗的水凝胶的比例大,但两种情况的膨胀机制几乎是相同的,即Fickian扩散行为。此外,使用氯霉素作为模型药物在去离子水中进行药物释放试验。结果表明,对于浸泡的水凝胶,药物负载高,而释放率慢。还基于水凝胶的形态讨论了较高负载但较慢的释放率的原因。另一方面,将CNC II添加到SA中,使得高药物载荷和缓释率缓慢。它是由于CNC II的强亲水性以及药物和SA / CNC II水凝胶之间的强相互作用。这项工作可以通过改变水凝胶的初始状态或CNC的晶体形式来调整水凝胶的肿胀和药物释放行为的新许可。

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