Determination of Diastereomeric Purity of Tranylcypromine Sulfate by Proton Magnetic Resonance Spectroscopy with Lanthanide Shift Reagent

1989 ◽  
Vol 72 (4) ◽  
pp. 556-558
Author(s):  
George M Hanna ◽  
Cesar A Lau-Cam

Abstract Use of proton nuclear magnetic resonance spectroscopy and the lanthanide shift reagent, Eu(hfc)3, resulted in a simple and reliable method for determination of the diastereomeric purity of rrans-2- phenylcyclopropylamine sulfate (tranylcypromine sulfate). Eu(hfc)3 effectively simplified the complex overlapping pattern of the 5 nonequivalent phenyl protons to a virtually first order pattern. At a shift reagent to substrate molar ratio of 0.75, and a substrate concentration of 0.25M (as the free base) in CDC13, the resonances for the cisand frans-orf/io-phenyl protons at 11.39 and 9.99 ppm, respectively, were sufficiently resolved to be of use in quantitative work. Analysis of synthetic diastereomeric mixtures of 2-phenylcyclopropylamine sulfate by the proposed method yielded results that were in close agreement with the expected values. The mean recovery (SD) of rrans-diastereomer was 100.51% (0.40) (n = 6). Levels of <2% of c/s-diastereomer were measurable in cis-trans mixtures

Sign in / Sign up

Export Citation Format

Share Document