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在聚乙二醇单甲醚存在下7-氨基去乙酰氧基头孢烷酸的增溶用于头孢氨苄的酶促合成。

Enhanced Dissolution of 7-ADCA in the Presence of PGME for Enzymatic Synthesis of Cephalexin.

作者信息

Fan Yixiao, Li Yingbo, Liu Qingfen

机构信息

CAS Key Laboratory of Green Process and Engineering, Institute of Process Engineering, Chinese Academy of Sciences, Beijing, 100190, People's Republic of China.

School of Chemical Engineering, University of Chinese Academy of Sciences, Beijing, 100049, People's Republic of China.

出版信息

Appl Biochem Biotechnol. 2022 Apr;194(4):1682-1698. doi: 10.1007/s12010-021-03705-7. Epub 2021 Nov 30.

Abstract

Enzymatic catalysis has been recognized as a green alternative to classical chemical route for synthesis of cephalexin (CEX). However, its industrial practice has been severely limited by the low productivity due to the low solubility of 7-amino-3-deacetoxycephalosporanic acid (7-ADCA) and high hydrolysis of D-phenylglycine methyl ester (PGME). In this work, the enhanced dissolution of 7-ADCA in the presence of PGME for efficient enzymatic synthesis of CEX was investigated. Results showed that the solubility of 7-ADCA in water could be improved by PGME. Moreover, supersaturated solution of 7-ADCA could be created in the presence of PGME by a pH shift strategy. The supersaturated solution of 7-ADCA possess good stability, which could be explained in terms of the inhibition of 7-ADCA precipitation due to the presence of PGME. The interaction between 7-ADCA and PGME is explored by spectroscopic determination and DFT analysis and the mechanism of enhanced dissolution of 7-ADCA in the presence of PGME is discussed and proposed. The feasibility of supersaturated solution of 7-ADCA for the enzymatic synthesis of CEX is evaluated. It was demonstrated that high conversion ratio (> 95.0%) and productivity (> 240.0 mmol/L/h) was obtained under a wide range of reaction conditions, indicating that the supersaturated solution system was highly superior to conventional homogeneous solution system. The information obtained in this work will be helpful to industrial production of CEX via enzymatic route.

摘要

酶催化已被认为是合成头孢氨苄(CEX)的经典化学路线的绿色替代方法。然而,由于7-氨基-3-去乙酰氧基头孢烷酸(7-ADCA)的低溶解度和D-苯甘氨酸甲酯(PGME)的高水解率,其工业应用受到生产率低下的严重限制。在这项工作中,研究了在PGME存在下7-ADCA的增强溶解以高效酶促合成CEX。结果表明,PGME可以提高7-ADCA在水中的溶解度。此外,通过pH值变化策略可以在PGME存在下制备7-ADCA的过饱和溶液。7-ADCA的过饱和溶液具有良好的稳定性,这可以通过PGME的存在对7-ADCA沉淀的抑制来解释。通过光谱测定和密度泛函理论(DFT)分析探索了7-ADCA与PGME之间的相互作用,并讨论和提出了PGME存在下7-ADCA增强溶解的机制。评估了7-ADCA过饱和溶液用于酶促合成CEX的可行性。结果表明,在广泛的反应条件下可获得高转化率(>95.0%)和生产率(>240.0 mmol/L/h),表明过饱和溶液体系比传统的均相溶液体系具有更高的优越性。这项工作中获得的信息将有助于通过酶促路线实现CEX的工业化生产。

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