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Synthesis of the anti-oxidant eugenol benzoate using Candida rugosa lipase immobilized onto multi walled carbon nanotubes

机译:利用固定在多壁碳纳米管上的皱纹念珠菌脂肪酶合成抗氧化剂丁香酚丁酸酯

摘要

Multi walled carbon nanotube (MWCNTs) having high surface area was used for the immobilization of lipase from Candida rugosa (CRL) by physical adsorption. The ability of the MWCNT immobilized CRL was compared against the free CRL in the esterification of benzoic acid with eugenol to produce the antioxidant eugenol benzoate, a potent lipoxygenase inhibitor. In this study, the effect of four parameters; reaction time, temperature, molecular sieves and enzyme loading were evaluated. The maximum yield of ester of reactions catalyzed by immobilized CRL and free lipase were found to be 31.62 and 27.2%, respectively. The study revealed that the optimal conditions for the highest yield of ester attained for both free CRL and immobilized CRL were similar. The attained optimum conditions were 5 mg/mL enzyme, 0.5:1.5 molar ratio of benzoic acid/eugenol dissolved in 38.5 mL chloroform, 500 mg of molecular sieves with 50 mL total volume of reaction mixture, stirred under 200 rpm at 40oC for 4 h. It was observed the MWCNT immobilized CRL afforded slightly higher yield of ester in all parameters investigated as compared to the free CRL. The outcome suggests that the MWCNT immobilized CRL could be used to synthesize eugenol benzoate. Furthermore, treatment of the esterification process is now easier due to simpler methods of separation of the end product and the biocatalyst could be recycled.
机译:具有高表面积的多壁碳纳米管(MWCNT)被用于通过物理吸附来固定来自假丝酵母(CRL)的脂肪酶。在苯甲酸与丁子香酚酯化过程中,将固定了MWCNT的CRL与游离CRL的能力进行了比较,以生成抗氧化剂丁子香酚苯甲酸酯(一种有效的脂氧合酶抑制剂)。在这项研究中,四个参数的影响;评价反应时间,温度,分子筛和酶载量。固定化CRL和游离脂肪酶催化的反应酯的最大收率分别为31.62和27.2%。研究表明,游离CRL和固定化CRL均可达到最高酯收率的最佳条件是相似的。达到的最佳条件是5 mg / mL酶,溶解在38.5 mL氯仿中的苯甲酸/丁子香酚的摩尔比为0.5:1.5、500 mg分子筛和50 mL总反应混合物,在200 rpm下于40oC搅拌4 h 。观察到,与游离CRL相比,在所有研究的参数中,MWCNT固定的CRL提供的酯收率略高。结果表明,固定有MWCNT的CRL可用于合成丁子香酚丁香酚。此外,由于更简单的终产物分离方法和生物催化剂可以循环利用,酯化过程的处理现在变得更容易。

著录项

  • 作者

    Abdullah Ismail Shawnm;

  • 作者单位
  • 年度 2014
  • 总页数
  • 原文格式 PDF
  • 正文语种 en
  • 中图分类
  • 入库时间 2022-08-20 20:06:47

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