Lecchi P, Abramson F P
Department of Pharmacology, George Washington University, School of Medicine, Washington, DC 20037, USA.
J Am Soc Mass Spectrom. 2000 May;11(5):400-6. doi: 10.1016/S1044-0305(00)00103-3.
A new method for measuring deuterium isotopic enrichment with CRIMS (chemical reaction interface mass spectrometry) is described. Using nitrogen as the reactant gas in a chemical reaction interface generates molecular hydrogen that provides the H2 and HD from which the deuterium content can be analyzed with a benchtop quadrupole mass spectrometer. Samples of deuterated leucine in unlabeled leucine were used as the primary test species. Detection of deuterium enrichment was accurate, precise, and linear. We used this scheme to evaluate the results of a process to acetylate lysine residues in a peptide-neurotensin. With separation on a C18 column, we found a 61% yield of the desired monoethylated product that had a D/H ratio very close to the theoretical one. Isotope ratio monitoring for deuterated species will be important in metabolism studies where CRIMS generates a comprehensive and quantitative view of products of deuterated precursors. Where concerns about metabolic isotope effects of deuterium are absent, the use of deuterium will enable these studies to be performed with simpler syntheses and at less cost than if using 13C or 15N.
描述了一种用CRIMS(化学反应界面质谱法)测量氘同位素富集的新方法。在化学反应界面中使用氮气作为反应气体生成分子氢,该分子氢提供了H₂和HD,通过台式四极杆质谱仪可对其中的氘含量进行分析。未标记亮氨酸中氘代亮氨酸的样品用作主要测试物种。氘富集的检测准确、精确且呈线性。我们用该方案评估了肽-神经降压素中赖氨酸残基乙酰化过程的结果。通过在C18柱上进行分离,我们发现所需单乙基化产物的产率为61%,其D/H比非常接近理论值。对于氘代物种的同位素比监测在代谢研究中很重要,其中CRIMS能生成氘代前体产物的全面定量视图。在不存在对氘的代谢同位素效应担忧的情况下,使用氘将使这些研究能够以比使用¹³C或¹⁵N更简单的合成方法且以更低成本进行。