CEA Saclay, SCBM, iBiTec-S, Building 547, PC # 108, 91191 Gif sur Yvette (France).
Angew Chem Int Ed Engl. 2014 Jan 3;53(1):230-4. doi: 10.1002/anie.201307930. Epub 2013 Nov 19.
An efficient H/D exchange method allowing the deuteration of pyridines, quinolines, indoles, and alkyl amines with D2 in the presence of Ru@PVP nanoparticles is described. By a general and simple procedure involving mild reaction conditions and simple filtration to recover the labeled product, the isotopic labeling of 22 compounds proceeded in good yield with high chemo- and regioselectivity. The viability of this procedure was demonstrated by the labeling of eight biologically active compounds. Remarkably, enantiomeric purity was conserved in the labeled compounds, even though labeling took place in the vicinity of the stereogenic center. The level of isotopic enrichment observed is suitable for metabolomic studies in most cases. This approach is also perfectly adapted to tritium labeling because it uses a gas as an isotopic source. Besides these applications to molecules of biological interest, this study reveals a rich and underestimated chemistry on the surface of ruthenium nanoparticles.
一种高效的 H/D 交换方法,可在 Ru@PVP 纳米粒子存在下,用 D2 将吡啶、喹啉、吲哚和烷基胺进行氘代。通过一种通用且简单的方法,涉及温和的反应条件和简单的过滤来回收标记产物,22 种化合物的同位素标记以高产率、高化学和区域选择性进行。该方法的可行性通过对 8 种生物活性化合物的标记得到了证明。值得注意的是,即使在立体中心附近进行标记,标记化合物的对映体纯度也得以保留。观察到的同位素丰度水平在大多数情况下适用于代谢组学研究。这种方法也非常适合氚标记,因为它使用气体作为同位素源。除了这些在具有生物意义的分子中的应用外,这项研究还揭示了在钌纳米粒子表面丰富且被低估的化学。