Sonnefeld Anna, Razanahoera Aiky, Pelupessy Philippe, Bodenhausen Geoffrey, Sheberstov Kirill
Department of chemistry, École Normale Supérieure, PSL University, Paris, France.
Sci Adv. 2022 Dec 2;8(48):eade2113. doi: 10.1126/sciadv.ade2113.
In nuclear magnetic resonance (NMR), the lifetimes of long-lived states (LLSs) are exquisitely sensitive to their environment. However, the number of molecules where such states can be excited has hitherto been rather limited. Here, it is shown that LLSs can be readily excited in many common molecules that contain two or more neighboring CH groups. Accessing such LLSs does not require any isotopic enrichment, nor does it require any stereogenic centers to lift the chemical equivalence of CH protons. LLSs were excited in a variety of metabolites, neurotransmitters, vitamins, amino acids, and other molecules. One can excite LLSs in several different molecules simultaneously. In combination with magnetic resonance imaging, LLSs can reveal a contrast upon noncovalent binding of ligands to macromolecules. This suggests new perspectives to achieve high-throughput parallel drug screening by NMR.
在核磁共振(NMR)中,长寿命态(LLSs)的寿命对其环境极为敏感。然而,迄今为止,能够激发此类状态的分子数量相当有限。在此表明,在许多含有两个或更多相邻CH基团的常见分子中,LLSs能够很容易地被激发。激发此类LLSs不需要任何同位素富集,也不需要任何手性中心来消除CH质子的化学等价性。在多种代谢物、神经递质、维生素、氨基酸及其他分子中均激发了LLSs。可以同时在几种不同的分子中激发LLSs。与磁共振成像相结合,LLSs能够在配体与大分子非共价结合时显示出对比度。这为通过NMR实现高通量并行药物筛选提供了新的视角。