Nowadays, there is a growing need for streamlined and sustainable strategies to access chiral nitrogen heterocycles, whose stereo-defined frameworks underpin their broad functional and pharmaceutical relevance. Herein, we report a robust continuous flow enzymatic protocol for the stereoselective synthesis of the natural alkaloid (–)-pinidinone and demonstrate its applicability to the preparation of a small family of structurally diverse chiral 2,6-disubstituted piperidines. The strategy relies on the enantioselective transamination of tailor-made α,β -unsaturated ketones catalyzed by an immobilized form of ATA-117, which triggers a spontaneous intramolecular aza-Michael reaction, enabling rapid access to chiral cis-(2R,6R)-piperidine scaffolds under mild conditions. The enzyme, successfully immobilized on Eupergit C, showed good operational and storage stability while a dual-flow feed configuration minimized the formation of imine and Michael-type by-products observed when a single stock solution of α,β -unsaturated ketone acceptor and isopropylamine (IPA) amino donor was employed. The optimized conditions (20 mM substrate, 200 mM IPA, 60 min residence time, 30 °C) allowed for complete conversion and high stereoselectivity, while an integrated in-line work-up improved automation and reduced manual handling. This study establishes a robust biocatalytic flow platform for the asymmetric synthesis of valuable nitrogen-containing heterocycles.
Chemoenzymatic Synthesis of Chiral Piperidines Using the Immobilized Transaminase ATA‐117 in Continuous Flow Reactors
Magrini Alunno, Ilaria;Patti, Stefania;Pirotta, Morena;Bassanini, Ivan;Ferrandi, Erica Elisa
;Monti, Daniela
;
2026
Abstract
Nowadays, there is a growing need for streamlined and sustainable strategies to access chiral nitrogen heterocycles, whose stereo-defined frameworks underpin their broad functional and pharmaceutical relevance. Herein, we report a robust continuous flow enzymatic protocol for the stereoselective synthesis of the natural alkaloid (–)-pinidinone and demonstrate its applicability to the preparation of a small family of structurally diverse chiral 2,6-disubstituted piperidines. The strategy relies on the enantioselective transamination of tailor-made α,β -unsaturated ketones catalyzed by an immobilized form of ATA-117, which triggers a spontaneous intramolecular aza-Michael reaction, enabling rapid access to chiral cis-(2R,6R)-piperidine scaffolds under mild conditions. The enzyme, successfully immobilized on Eupergit C, showed good operational and storage stability while a dual-flow feed configuration minimized the formation of imine and Michael-type by-products observed when a single stock solution of α,β -unsaturated ketone acceptor and isopropylamine (IPA) amino donor was employed. The optimized conditions (20 mM substrate, 200 mM IPA, 60 min residence time, 30 °C) allowed for complete conversion and high stereoselectivity, while an integrated in-line work-up improved automation and reduced manual handling. This study establishes a robust biocatalytic flow platform for the asymmetric synthesis of valuable nitrogen-containing heterocycles.| File | Dimensione | Formato | |
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Vicinanza2026_ASC_Chemoenzymatic Synthesis of Chiral Piperidines Using the Immobilized Transaminase.pdf
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Vicinanza2026_ASC_SI_Chemoenzymatic Synthesis of Chiral Piperidines Using the Immobilized Transaminase.pdf
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