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Chemical Crosslinking of Acrylic Acid to Form Biocompatible pH Sensitive Hydrogel Reinforced with Cellulose Nanocrystals (CNC)

机译:用纤维素纳米晶体加固丙烯酸化学交联,形成生物相容性pH敏感水凝胶(CNC)

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The purpose of this study is to produce a novel pH and temperature sensitive hydrogel, composed of poly(acrylic acid) (PAA) and cellulose nanocrystal (CNC). CNC was extracted from kenaf fiber through a series of alkali and bleaching treatments followed by acid hydrolysis. The PAA was then subjected to chemical cross-linking using the cross-linking agent (N,N-methylenebisacrylamide) with CNC entrapped in PAA matrix. The mixture was casted onto petri dish to obtain disc shape hydrogel. The effects of reaction conditions such as the ratio of PAA and CNC on the swelling behavior of the hydrogel obtained towards pH and temperature were studied. The obtained hydrogel was further subjected to different tests such swelling test for swelling behaviour at different pH and temperature along with scanning electron microscopy (SEM) for morphology analysis. The hydrogel obtained showed excellent pH sensitivity and obtained maximum swelling at pH 7. Besides that, hydrogel obtained showed significant increase in swelling ratio when temperature of swelling medium was increased from 25°C to 37°C. SEM micrograph showed that the pore size of the hydrogel decreases with increase of CNC content proving that the hydrogel structure became more rigid with addition of CNC. The PAA/CNC hydrogel with such excellent sensitivity towards pH and temperature can be developed further as drug carrier.
机译:本研究的目的是产生一种新的pH和温度敏感水凝胶,由聚(丙烯酸)(PAA)和纤维素纳米晶(CNC)组成。通过一系列碱和漂白处理从keanaf纤维中提取CNC,然后进行酸水解。然后使用用CNC捕获在PAA基质中的CNC的交联剂(N,N-亚甲基二丙烯胺)进行化学交联。将混合物浇铸到培养皿上以获得盘形水凝胶。研究了反应条件的影响,例如PAA和CNC的比例对pH和温度获得的水凝胶的溶胀行为。进一步对所得水凝胶进行不同的试验,用于在不同的pH和温度下溶胀行为以及扫描电子显微镜(SEM)进行形态学分析。得到的水凝胶显示出优异的pH敏感性,并在pH7下获得最大溶胀。除此之外,当溶胀介质的温度从25℃升高到37℃时,水凝胶显示出溶胀比率显着增加。 SEM显微照片显示水凝胶的孔径随着CNC含量的增加而降低,证明水凝胶结构在添加CNC时变得更加僵硬。具有这种对pH和温度具有如此优异敏感性的PAA / CNC水凝胶可以进一步开发为药物载体。

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