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Immobilization studies of Candida Antarctica lipase B on gallic acid resin-grafted magnetic iron oxide nanoparticles

机译:没食子酸树脂接枝的磁性氧化铁纳米粒子固定化念珠菌南极脂肪酶B的研究

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摘要

>Purpose: Here, we present the successful preparation of a highly efficient gallic acid resin grafted with magnetic nanoparticles (MNPs) and containing a branched brush polymeric shell.>Methods: Using a convenient co-precipitation method, we prepared Fe3O4 nanoparticles stabilized by citric acid. These nanoparticles underwent further silica modification and amino functionalization followed by gallic acid functionalization on their surface. Under alkaline conditions, we used a condensation reaction that combined formaldehyde and gallic, to graft the gallic acid−formaldehyde resin on the surface. We then evaluated the polymer-grafted MNPs to assay the Candida Antarctica B lipase(Cal-B) immobilization via physical adsorption.>Conclusion: Furthermore, during optimization of parameters that defined conditions of immobilization, we found that the optimum immobilization was achieved in 15 mins. Also, optimal immobilization temperature and pH were 38ºC and 7.5, respectively. In addition, the reusability study of immobilized lipase polymer-grafted MNPs was done by isolating the MNPs from the reaction medium using magnetic separation, which showed that grafted MNPs reached 5 cycles with 91% activity retention.
机译:>目的:在这里,我们成功地制备了接枝有磁性纳米颗粒(MNP)且含有分支刷状聚合物外壳的高效没食子酸树脂。>方法:使用方便共沉淀法,我们制备了柠檬酸稳定的Fe3O4纳米粒子。这些纳米颗粒进一步进行了二氧化硅改性和氨基官能化,然后在其表面进行了没食子酸官能化。在碱性条件下,我们使用了甲醛和没食子酸的缩合反应,将没食子酸-甲醛树脂接枝到表面上。然后,我们评估了聚合物接枝的MNP,以通过物理吸附法测定南极假丝酵母B脂肪酶(Cal-B)的固定化。>结论:此外,在优化定义固定化条件的参数期间,我们发现在15分钟内达到最佳固定。另外,最佳固定温度和pH分别为38ºC和7.5。此外,固定化脂肪酶聚合物接枝的MNPs的可重复使用性研究是通过磁分离从反应介质中分离MNPs进行的,这表明接枝的MNPs达到了5个循环,保留了91%的活性。

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