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首页> 外文期刊>Cellulose >Temperature-sensitive poly-NIPAm modified cellulose nanofibril cryogel microspheres for controlled drug release
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Temperature-sensitive poly-NIPAm modified cellulose nanofibril cryogel microspheres for controlled drug release

机译:温度敏感的聚-NIPAm改性纤维素纳米原纤维冻凝胶微球,可控药物释放

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摘要

In this article, we report a novel method for synthesizing temperature-sensitive polymer-modified cellulose nanofibril (CNF) cryogel microspheres. The pristine cryogel microspheres were first prepared using a spray-freeze dry method in the presence of a chemical crosslinker. Afterwards, NIPAm (N-isopropylacrylamide), a temperature-sensitive monomer, was polymerized and grafted to the cellulose cryogel microspheres through in situ free radical polymerization in the cryogel microreactor. The morphology, chemical structure, thermal sensitivity, bulk density and water uptake capacity of the hybrid microspheres were characterized. The CNF-PNIPAm hybrid microspheres exhibited a good temperature response at around 32 A degrees C in water. The swelling behavior and drug release capability of CNF-PNIPAm hybrid microspheres were also investigated. The microspheres with PNIPAm exhibited a controllable drug release rate. The temperature effect on the drug release rate was also observed. These results indicated that porous CNF-PNIPAm hybrid microspheres could serve as a new type of material for controlled drug release.
机译:在本文中,我们报告了一种合成温度敏感的聚合物改性纤维素纳米原纤维(CNF)冷冻凝胶微球的新方法。首先在化学交联剂存在下使用喷雾冷冻干燥法制备原始的冷冻凝胶微球。然后,将温度敏感的单体NIPAm(N-异丙基丙烯酰胺)聚合,并通过在冷冻凝胶微反应器中进行原位自由基聚合将其接枝到纤维素冷冻凝胶微球上。表征了杂化微球的形态,化学结构,热敏性,堆积密度和吸水能力。 CNF-PNIPAm杂化微球在水中约32 A的温度下表现出良好的温度响应。还研究了CNF-PNIPAm杂化微球的溶胀行为和药物释放能力。具有PNIPAm的微球显示出可控的药物释放速率。还观察到温度对药物释放速率的影响。这些结果表明,多孔CNF-PNIPAm杂化微球可以作为控制药物释放的新型材料。

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