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首页> 外文期刊>Bioresources and Bioprocessing >Penicillin acylase-catalyzed synthesis of N-bromoacetyl-7-aminocephalosporanic acid, the key intermediate for the production of cefathiamidine
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Penicillin acylase-catalyzed synthesis of N-bromoacetyl-7-aminocephalosporanic acid, the key intermediate for the production of cefathiamidine

机译:青霉素酰化酶催化的N-溴乙酰基-7-氨基头孢烷酸的合成,这是生产头孢硫ia的关键中间体

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Background: Enzymatic approaches have become promising alternatives to chemical methods for the production of semi-synthetic β-lactam antibiotics. In this work, enzymatic synthesis of N-bromoacetyl-7-aminocephalosporanic acid (N-bromoacetyl-7-ACA), the key intermediate for the production of cefathiamidine, was reported for the first time. Results: Of the immobilized penicillin acylases (PAs) tested, PGA-750 was the best biocatalyst. Optimization of the biocatalytic process was conducted. The optimal acyl donor, molar ratio of acyl donor to 7-ACA, pH, temperature, 7-ACA concentration, and enzyme dosage were methyl bromoacetate, 3, 7.5, 20℃, 50 mmol/L and 4 U/mL, respectively. Under the optimal conditions, enzymatic N-acylation of 7-ACA with methyl bromoacetate afforded the desired product with the yield of 85% in 2 h, where the synthesis/hydrolysis (S/H) ratio was approximately 1.5. The immobilized enzyme PGA-750 exhibited good operational stability, and the relative yields of approximately 90% and 63% were achieved, respectively, when it was reused in 7th and 11th batch. Conclusions: An enzymatic approach to N-bromoacetyl-7-ACA, the key intermediate for the industrial production of cefathiamidine, has been developed successfully in a fully aqueous medium. The present work may open up a novel opportunity for the production of cefathiamidine through a simple and green process.
机译:背景:酶促方法已成为生产半合成β-内酰胺类抗生素的化学方法的有前途的替代方法。在这项工作中,首次报道了酶促合成N-溴乙酰基-7-氨基头孢烷酸(N-溴乙酰基-7-ACA),它是生产头孢噻啶的关键中间体。结果:在测试的固定化青霉素酰酶(PAs)中,PGA-750是最好的生物催化剂。进行了生物催化过程的优化。最佳酰基供体,酰基供体与7-ACA的摩尔比,pH,温度,7-ACA浓度和酶用量分别为溴乙酸甲酯,3、7.5、20℃,50 mmol / L和4 U / mL。在最佳条件下,用溴乙酸甲酯对7-ACA进行酶N-酰化反应可在2小时内以85%的收率得到所需的产物,其中合成/水解(S / H)比率约为1.5。固定化酶PGA-750表现出良好的操作稳定性,当在第7和第11批中重复使用时,相对产率分别约为90%和63%。结论:在全水介质中成功开发了酶促方法N-溴乙酰基7-ACA,这是工业生产头孢硫m的关键中间体。目前的工作可能会为通过简单而绿色的工艺生产头孢噻啶提供新的机会。

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