Semiconductor photocatalysis to engineering deuterated N-alkyl pharmaceuticals enabled by synergistic activation of water and alkanols.

Zhang, Zhaofei; Qiu, Chuntian; Xu, Yangsen; Han, Qing; Tang, Junwang; Loh, Kian Ping; Su, Chenliang · Nat Commun · 2020

basic_science · Level V

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Abstract

Precisely controlled deuterium labeling at specific sites of N-alkyl drugs is crucial in drug-development as over 50% of the top-selling drugs contain N-alkyl groups, in which it is very challenging to selectively replace protons with deuterium atoms. With the goal of achieving controllable isotope-labeling in N-alkylated amines, we herein rationally design photocatalytic water-splitting to furnish [H] or [D] and isotope alkanol-oxidation by photoexcited electron-hole pairs on a polymeric semiconductor. The controlled installation of N-CH<sub>3,</sub> -CDH<sub>2,</sub> -CD<sub>2</sub>H, -CD<sub>3</sub>, and -<sup>13</sup>CH<sub>3</sub> groups into pharmaceutical amines thus has been demonstrated by tuning isotopic water and methanol. More than 50 examples with a wide range of functionalities are presented, demonstrating the universal applicability and mildness of this strategy. Gram-scale production has been realized, paving the way for the practical photosynthesis of pharmaceuticals.

Medical subject headings