Designing Chemical Systems for Precision Deuteration of Medicinal Building Blocks

Dabbs, J. D.; Taylor, C. C.; Holdren, M. S.; Brewster, S. E.; Quillin, B. T.; Meng, A. Q.; Dickie, D. A.; Pate, B. H.; Harman, D. Designing Chemical Systems for Precision Deuteration of Medicinal Building Blocks. Nat Commun 2024, 15, 8473.

Abstract

Methods are lacking that can prepare deuterium-enriched building blocks, in the full range of deuterium substitution patterns at the isotopic purity levels demanded by pharmaceutical use. To that end, this work explores the regio- and stereoselective deuteration of tetrahydropyridine (THP), which is an attractive target for study due to the wide prevalence of piperidines in drugs. A series of d0—d8 tetrahydropyridine isotopomers were synthesized by the stepwise treatment of a tungsten-complexed pyridinium salt with H-/D- and H+/D+. The resulting decomplexed THP isotopomers and isotopologues were analyzed via molecular rotational resonance (MRR) spectroscopy, a highly sensitive technique that distinguishes isotopomers and isotopologues by their unique moments of inertia. In order to demonstrate the medicinal relevance of this approach, eight unique deuterated isotopologues of erythro-methylphenidate were also prepared.

Last updated on 08/10/2025