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首页> 外文期刊>Biotechnology and Bioengineering >Preparation of reusable bioreactors using reversible immobilization of enzyme on monolithic porous polymer support with attached gold nanoparticles
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Preparation of reusable bioreactors using reversible immobilization of enzyme on monolithic porous polymer support with attached gold nanoparticles

机译:通过将酶可逆固定在附有金纳米颗粒的整体多孔聚合物载体上,制备可重复使用的生物反应器

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摘要

Porcine lipase has been reversibly immobilized on a monolithic polymer support containing thiol functionalities prepared within confines of a fused silica capillary and functionalized with gold nanoparticles. Use of gold nanoparticles enabled rejuvenation of the activity of the deactivated reactor simply by stripping the inactive enzyme from the nanoparticles using 2-mercaptoethanol and subsequent immobilization of fresh lipase. This flow through enzymatic reactor was then used to catalyze the hydrolysis of glyceryl tributyrate (tributyrin). The highest activity was found within a temperature range of 37-40°C. The reaction kinetics is characterized by Michaelis-Menten constant, K_m=10.9mmol/L, and maximum reaction rate, V_(max)=5.0mmol/Lmin. The maximum reaction rate for the immobilized enzyme is 1,000 times faster compared to lipase in solution. The fast reaction rate enabled to achieve 86.7% conversion of tributyrin in mere 2.5min and an almost complete conversion in 10min. The reactor lost only less than 10% of its activity even after continuous pumping through it a solution of substrate equaling 1,760 reactor volumes. Finally, potential application of this enzymatic reactor was demonstrated with the transesterification of triacylglycerides from kitchen oil to fatty acid methyl esters thus demonstrating the ability of the reactor to produce biodiesel.
机译:猪脂肪酶已可逆地固定在包含硫醇官能团的整体式聚合物载体上,该载体在熔融二氧化硅毛细管的范围内制备,并用金纳米颗粒官能化。通过使用2-巯基乙醇从纳米颗粒中去除无活性的酶,然后固定新鲜的脂肪酶,使用金纳米颗粒能够使失活的反应器的活性恢复活力。然后,该流过酶促反应器的流用于催化甘油三丁酸酯(三丁酸甘油酯)的水解。在37-40°C的温度范围内发现了最高的活性。反应动力学的特征在于Michaelis-Menten常数K_m = 10.9mmol / L和最大反应速率V_(max)= 5.0mmol / Lmin。固定化酶的最大反应速率是溶液中脂肪酶的1,000倍。快速的反应速率使得仅在2.5分钟内即可实现三丁酸甘油酯的86.7%转化,而在10分钟内几乎完全转化。即使连续向反应器中泵送相当于1,760个反应器体积的底物溶液,反应器的活性也仅损失不到10%。最后,通过将三酰基甘油酯从厨房用油进行酯交换为脂肪酸甲酯,证明了该酶反应器的潜在应用,从而证明了该反应器生产生物柴油的能力。

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