Excited‐State Basicity Diverts the Site‐Selectivity of Aromatic Deuteration: Application to the Late‐Stage Labeling of Pharmaceuticals

E Eva Rivera‐Chao (Institute of Organic Chemistry RWTH Aachen University Landoltweg 1 Aachen 52056 Germany) J Javier Corpas (Institute of Organic Chemistry RWTH Aachen University Landoltweg 1 Aachen 52056 Germany) G Giovanni Lonardi V Volker Derdau (Sanofi-Aventis Deutschland GmbH, R&D, Integrated Drug Discovery, Industriespark Höchst) A Alessandro Ruffoni D Daniele Leonori

Abstract

Abstract Isotope labeling, particularly with deuterium ( 2 H), plays a critical role in drug discovery due to its ease of incorporation and its potential to switch unwanted metabolic transformations. Deuterium incorporation can enhance drug stability, affect pharmacokinetics, and alter metabolism pathways. Current deuterium labeling methods focus on hydrogen isotope exchange (HIE), and typically rely on the use of transition metal catalysis. Herein, we present a metal‐free approach for aromatic HIE, utilizing photoexcitation in deuterated hexafluoroisopropanol (HFIP‐ d 1 ). By exploiting the enhanced basicity of excited‐state aromatics, this method achieves selective deuteration at positions often inaccessible by traditional methods. The approach is efficient and was demonstrated across a broad number of complex drug molecules. Transient absorption spectroscopy confirms the formation of deuterated arenium ions.

Article Details

Volume / Issue Vol. 64, Issue 25
Published June 17, 2025
ISSN 1433-7851
Publisher Wiley

Journal Info

Angewandte Chemie International Edition

Wiley

ISSN: 1433-7851 Physical Sciences

Authors (6)

E

Eva Rivera‐Chao

Institute of Organic Chemistry RWTH Aachen University Landoltweg 1 Aachen 52056 Germany

J

Javier Corpas

Institute of Organic Chemistry RWTH Aachen University Landoltweg 1 Aachen 52056 Germany

G

Giovanni Lonardi

V

Volker Derdau

Sanofi-Aventis Deutschland GmbH, R&D, Integrated Drug Discovery, Industriespark Höchst

A

Alessandro Ruffoni

D

Daniele Leonori