Signal-enhanced real-time magnetic resonance of enzymatic reactions at millitesla fields

2021 | journal article. A publication with affiliation to the University of Göttingen.

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​Signal-enhanced real-time magnetic resonance of enzymatic reactions at millitesla fields​
Korchak, S.; Jagtap, A. P. & Glöggler, S.​ (2021) 
Chemical Science12(1) pp. 314​-319​.​ DOI: https://doi.org/10.1039/D0SC04884D 

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Authors
Korchak, Sergey; Jagtap, Anil P.; Glöggler, Stefan
Abstract
We demonstrate that metabolism can be monitored in real-time with magnetic resonance at milli-tesla fields that are 1000 fold lower than state-of-the-art high field spectrometers.
The phenomenon of nuclear magnetic resonance (NMR) is widely applied in biomedical and biological science to study structures and dynamics of proteins and their reactions. Despite its impact, NMR is an inherently insensitive phenomenon and has driven the field to construct spectrometers with increasingly higher magnetic fields leading to more detection sensitivity. Here, we are demonstrating that enzymatic reactions can be followed in real-time at millitesla fields, three orders of magnitude lower than the field of state-of-the-art NMR spectrometers. This requires signal-enhancing samples via hyperpolarization. Within seconds, we have enhanced the signals of 2- 13 C-pyruvate, an important metabolite to probe cancer metabolism, in 22 mM concentrations (up to 10.1% ± 0.1% polarization) and show that such a large signal allows for the real-time detection of enzymatic conversion of pyruvate to lactate at 24 mT. This development paves the pathways for biological studies in portable and affordable NMR systems with a potential for medical diagnostics.
Issue Date
2021
Journal
Chemical Science 
ISSN
2041-6520
eISSN
2041-6539
Language
English
Sponsor
Max-Planck-Gesellschaft https://doi.org/10.13039/501100004189

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