Pyridine-based strategies towards nitrogen isotope exchange and multiple isotope incorporation.

Feng, Minghao; Norlöff, Maylis; Guichard, Benoit; Kealey, Steven; D'Anfray, Timothée; Thuéry, Pierre; Taran, Frédéric; Gee, Antony et al. · Nat Commun · 2024

basic_science · Level V

Where this comes from

Abstract

Isotopic labeling is at the core of health and life science applications such as nuclear imaging, metabolomics and plays a central role in drug development. The rapid access to isotopically labeled organic molecules is a sine qua non condition to support these societally vital areas of research. Based on a rationally driven approach, this study presents an innovative solution to access labeled pyridines by a nitrogen isotope exchange reaction based on a Zincke activation strategy. The technology conceptualizes an opportunity in the field of isotope labeling. <sup>15</sup>N-labeling of pyridines and other relevant heterocycles such as pyrimidines and isoquinolines showcases on a large set of derivatives, including pharmaceuticals. Finally, we explore a nitrogen-to-carbon exchange strategy in order to access <sup>13</sup>C-labeled phenyl derivatives and deuterium labeling of mono-substituted benzene from pyridine-<sup>2</sup>H<sub>5</sub>. These results open alternative avenues for multiple isotope labeling on aromatic cores.