z-logo
Premium
Hyperpolarization of Amino Acids in Water Utilizing Parahydrogen on a Rhodium Nanocatalyst
Author(s) -
Kaltschnee Lukas,
Jagtap Anil P.,
McCormick Jeffrey,
Wagner Shawn,
Bouchard LouisS.,
Utz Marcel,
Griesinger Christian,
Glöggler Stefan
Publication year - 2019
Publication title -
chemistry – a european journal
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.687
H-Index - 242
eISSN - 1521-3765
pISSN - 0947-6539
DOI - 10.1002/chem.201902878
Subject(s) - spin isomers of hydrogen , rhodium , hyperpolarization (physics) , chemistry , combinatorial chemistry , organic chemistry , catalysis , hydrogen , nuclear magnetic resonance spectroscopy
NMR offers many possibilities in chemical analysis, structural investigations, and medical diagnostics. Although it is broadly used, one of NMR spectroscopies main drawbacks is low sensitivity. Hyperpolarization techniques enhance NMR signals by more than four orders of magnitude allowing the design of new contrast agents. Parahydrogen induced polarization that utilizes the para ‐hydrogen's singlet state to create enhanced signals is of particular interest since it allows to produce molecular imaging agents within seconds. Herein, we present a strategy for signal enhancement of the carbonyl 13 C in amino acids by using parahydrogen, as demonstrated for glycine and alanine. Importantly, the hyperpolarization step is carried out in water and chemically unmodified canonical amino acids are obtained. Our approach thus offers a high degree of biocompatibility, which is crucial for further application. The rapid sample hyperpolarization (within seconds) may enable the continuous production of biologically useful probes, such as metabolic contrast agents or probes for structural biology.

This content is not available in your region!

Continue researching here.

Having issues? You can contact us here