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Racemization of undesired enantiomers: Immobilization of mandelate racemase and application in a fixed bed reactor
Authors:Katarzyna Wrzosek  Mariel A. García Rivera  Katja Bettenbrock  Andreas Seidel‐Morgenstern
Affiliation:1. Max‐Planck Institute for Dynamics of Complex Technical System, Physical and Chemical Foundations of Process Engineering, Magdeburg, Germany;2. Swiss Federal Institute of Technology in Lausanne EPFL, Section of Chemistry and Chemical Engineering, Lausanne, Switzerland;3. Max‐Planck Institute for Dynamics of Complex Technical System, Analysis and Redesign of Biological Networks, Magdeburg, Germany;4. Otto von Guericke University, Chemical Process Engineering, Magdeburg, Germany
Abstract:Production of optically pure products can be based on simple unselective synthesis of racemic mixtures combined with a subsequent separation of the enantiomers; however, this approach suffers from a 50% yield limitation which can be overcome by racemization of the undesired enantiomer and recycling. Application of biocatalyst for the racemization steps offers an attractive option for high‐yield manufacturing of commercially valuable compounds. Our work focuses on exploiting the potential of racemization with immobilized mandelate racemase. Immobilization of crude mandelate racemase via covalent attachment was optimized for two supports: Eupergit® CM and CNBr‐activated Sepharose 4 Fast Flow. To allow coupling of enzymatic reaction with enantioselective chromatography, a mobile phase composition compatible with both processes was used in enzymatic reactor. Kinetic parameters obtained analyzing experiments carried out in a batch reactor could be successfully used to predict fixed‐bed reactor performance. The applicability of the immobilized enzyme and the determined kinetic parameters were validated in transient experiments recording responses to pulse injections of R‐mandelic acid. The approach investigated can be used for futher design and optimization of high yield combined resolution processes. The characterized fixed‐bed enzymatic reactor can be integrated e.g. with chromatographic single‐ or multicolumn steps in various configurations.
Keywords:Enzyme immobilization  Fixed‐bed reactor  Mandelate racemase  Racemization  Reversible Michealis‐Menten kinetics
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