Hydrogenation of the semisynthetic vinca alkaloid vinpocetine produces two epimers that have previously been investigated as chiral additives. However, the absence of a full characterization generated some ambiguities in their stereochemical identification. In this study, computational methods, NMR analysis, and X-ray crystallography were employed to clarify and revise the previously reported assignment. Additionally, various methods for the reduction of the 16,17-double bond of vinpocetine are explored. A comparative analysis of epimer formation ratios with the corresponding alcohols is presented, supported by a detailed NMR characterization of these previously unexplored alkaloids.
Revisiting the Reduction of Vinpocetine / S. Borsoi, L. Pozzi, V. Fasano, A. Citarella, G. Macetti, L.L. Presti, G. Paladino, U. Ciriello, D. Passarella. - In: CHEMISTRYSELECT. - ISSN 2365-6549. - 10:7(2025 Feb 19), pp. e202406175.1-e202406175.5. [10.1002/slct.202406175]
Revisiting the Reduction of Vinpocetine
S. BorsoiPrimo
;L. PozziSecondo
;V. Fasano;A. Citarella;G. Macetti;L.L. Presti;G. Paladino;D. Passarella
Ultimo
2025
Abstract
Hydrogenation of the semisynthetic vinca alkaloid vinpocetine produces two epimers that have previously been investigated as chiral additives. However, the absence of a full characterization generated some ambiguities in their stereochemical identification. In this study, computational methods, NMR analysis, and X-ray crystallography were employed to clarify and revise the previously reported assignment. Additionally, various methods for the reduction of the 16,17-double bond of vinpocetine are explored. A comparative analysis of epimer formation ratios with the corresponding alcohols is presented, supported by a detailed NMR characterization of these previously unexplored alkaloids.File | Dimensione | Formato | |
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