Abstract
The use of the solvent engineering has been applied for controlling the resolution of lipase-catalyzed synthesis of β-aminoacids via Michael addition reactions. The strategy consisted of the thermodynamic control of products at equilibrium using the lipase CalB as a catalyst. The enzymatic chemo- and enantioselective synthesis of (R)-(−)-N-benzyl-3-(benzylamino)butanamide is reported, showing the influence of the solvent on the chemoselectivity of the aza-Michael addition and the subsequent kinetic resolution of the Michael adduct; both processes are catalyzed by CalB and both are influenced by the nature of the solvent medium. This approach allowed us to propose a novel one-pot strategy for the enzymatic synthesis of enantiomerically enriched β-aminoesters and β-aminoacids.
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Ortega-Rojas, M. A., Rivera-Ramírez, J. D., Ávila-Ortiz, C. G., Juaristi, E., GonzÁlez-Mu oz, F., Castillo, E., & Escalante, J. (2017). One-pot lipase-catalyzed enantioselective synthesis of (r)-(−)-n-benzyl-3-(benzylamino)butanamide: The effect of solvent polarity on enantioselectivity. Molecules, 22(12). https://doi.org/10.3390/molecules22122189
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