Chemoenzymatic Synthesis in Flow Reactors: A Rapid and Convenient Preparation of Captopril

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Abstract

The chemoenzymatic flow synthesis of enantiomerically pure captopril, a widely used antihypertensive drug, is accomplished starting from simple, inexpensive, and readily available reagents. The first step is a heterogeneous biocatalyzed regio- and stereoselective oxidation of cheap prochiral 2-methyl-1,3-propandiol, performed in flow using immobilized whole cells of Acetobacter aceti MIM 2000/28, thus avoiding the use of aggressive and environmentally harmful chemical oxidants. The isolation of the highly hydrophilic intermediate (R)-3-hydroxy-2-methylpropanoic acid is achieved in-line by using a catch-and-release strategy. Then, three sequential high-throughput chemical steps lead to the isolation of captopril in only 75 min. In-line quenching and liquid–liquid separation enable breaks in the workflow and other manipulations to be avoided.

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De Vitis, V., Dall’Oglio, F., Pinto, A., De Micheli, C., Molinari, F., Conti, P., … Tamborini, L. (2017). Chemoenzymatic Synthesis in Flow Reactors: A Rapid and Convenient Preparation of Captopril. ChemistryOpen, 6(5), 668–673. https://doi.org/10.1002/open.201700082

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