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首页> 外文期刊>Biotechnology Progress >Enzyme Reaction Engineering: Effect of Methanol on the Synthesis of Antibiotics Catalyzed by Immobilized Penicillin G Acylase under Isothermal and Non-Isothermal Conditions
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Enzyme Reaction Engineering: Effect of Methanol on the Synthesis of Antibiotics Catalyzed by Immobilized Penicillin G Acylase under Isothermal and Non-Isothermal Conditions

机译:酶反应工程:等温和非等温条件下甲醇对固定化青霉素G酰基转移酶催化合成抗生素的影响

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The effect of methanol on the kinetically controlled synthesis of cephalexin by free and immobilized penicillin G acylase (PGA) was investigated. Catal;ytic and hydro-phobic membranes were obtained by chemical grafting, activation, and PGA im-mobilization on hydrophobic nylon supports. Butyl methacrylate (BMA) was used as graft monomer. Increasing concentrations of methanol were found to cause a greater deleterious effect on the activity of free than on that of the immobilized enzyme. Methanol, however, improved the kinetic stability of cephalexin synthesized by free PGA, resulting in higher maximum yields. By contrast, immobilized PGA reached 100% yields even in the absence of the cosolvent. Cephalexin synthesis by the catalytic membrane was also performed in a non-isothermal bioreactor. Under these conditions, a 94% increase of the synthetic activity and complete conversion of the limiting substrate to cephalexin were obtained. The addition of methanol reduced the nonisothermal activity increase. The physical cause responsible for the non-isothermal behavior of the hydrophobic catalytic membrane was identified in the process of thermodialysis.
机译:研究了甲醇对游离和固定化青霉素G酰基转移酶(PGA)动力学控制的头孢氨苄合成的影响。阳离子,疏水膜和疏水膜通过化学接枝,活化和PGA固定在疏水尼龙载体上获得。甲基丙烯酸丁酯(BMA)用作接枝单体。发现增加浓度的甲醇对游离活性的危害大于对固定化酶的有害作用。但是,甲醇改善了游离PGA合成的头孢氨苄的动力学稳定性,从而提高了最高收率。相反,即使不存在助溶剂,固定化的PGA仍可达到100%的收率。通过催化膜的头孢氨苄合成也在非等温生物反应器中进行。在这些条件下,合成活性提高了94%,极限底物完全转化为头孢氨苄。甲醇的加入减少了非等温活性的增加。在热渗析过程中确定了造成疏水催化膜非等温行为的物理原因。

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