Order‐Unity 13 C Nuclear Polarization of [1‐ 13 C]Pyruvate in Seconds and the Interplay of Water and SABRE Enhancement
Isaiah Adelabu
1
,
Patrick TomHon
2
,
Mohammad S H Kabir
1
,
Shiraz Nantogma
1
,
Mustapha Abdulmojeed
2
,
Iuliia Mandzhieva
2
,
Jessica Ettedgui
3
,
Rolf E. Swenson
3
,
Murali Krishna
4
,
Thomas Theis
2
,
Boyd M. Goodson
5
,
Eduard Chekmenev
1, 6
4
6
Russian Academy of Sciences Leninskiy Prospect, 14 119991 Moscow Russia
|
Publication type: Journal Article
Publication date: 2021-12-09
scimago Q2
wos Q3
SJR: 0.553
CiteScore: 3.6
Impact factor: 2.2
ISSN: 14394235, 14397641
PubMed ID:
34813142
Physical and Theoretical Chemistry
Atomic and Molecular Physics, and Optics
Abstract
Signal Amplification By Reversible Exchange in SHield Enabled Alignment Transfer (SABRE-SHEATH) is investigated to achieve rapid hyperpolarization of 13 C1 spins of [1-13 C]pyruvate, using parahydrogen as the source of nuclear spin order. Pyruvate exchange with an iridium polarization transfer complex can be modulated via a sensitive interplay between temperature and co-ligation of DMSO and H2 O. Order-unity 13 C (>50 %) polarization of catalyst-bound [1-13 C]pyruvate is achieved in less than 30 s by restricting the chemical exchange of [1-13 C]pyruvate at lower temperatures. On the catalyst bound pyruvate, 39 % polarization is measured using a 1.4 T NMR spectrometer, and extrapolated to >50 % at the end of build-up in situ. The highest measured polarization of a 30-mM pyruvate sample, including free and bound pyruvate is 13 % when using 20 mM DMSO and 0.5 M water in CD3 OD. Efficient 13 C polarization is also enabled by favorable relaxation dynamics in sub-microtesla magnetic fields, as indicated by fast polarization buildup rates compared to the T1 spin-relaxation rates (e. g., ∼0.2 s-1 versus ∼0.1 s-1 , respectively, for a 6 mM catalyst-[1-13 C]pyruvate sample). Finally, the catalyst-bound hyperpolarized [1-13 C]pyruvate can be released rapidly by cycling the temperature and/or by optimizing the amount of water, paving the way to future biomedical applications of hyperpolarized [1-13 C]pyruvate produced via comparatively fast and simple SABRE-SHEATH-based approaches.
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Citations from 2025:
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Adelabu I. et al. Order‐Unity 13 C Nuclear Polarization of [1‐ 13 C]Pyruvate in Seconds and the Interplay of Water and SABRE Enhancement // ChemPhysChem. 2021. Vol. 23. No. 2.
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Adelabu I., TomHon P., Kabir M. S. H., Nantogma S., Abdulmojeed M., Mandzhieva I., Ettedgui J., Swenson R. E., Krishna M., Theis T., Goodson B. M., Chekmenev E. Order‐Unity 13 C Nuclear Polarization of [1‐ 13 C]Pyruvate in Seconds and the Interplay of Water and SABRE Enhancement // ChemPhysChem. 2021. Vol. 23. No. 2.
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TY - JOUR
DO - 10.1002/cphc.202100839
UR - https://doi.org/10.1002/cphc.202100839
TI - Order‐Unity 13 C Nuclear Polarization of [1‐ 13 C]Pyruvate in Seconds and the Interplay of Water and SABRE Enhancement
T2 - ChemPhysChem
AU - Adelabu, Isaiah
AU - TomHon, Patrick
AU - Kabir, Mohammad S H
AU - Nantogma, Shiraz
AU - Abdulmojeed, Mustapha
AU - Mandzhieva, Iuliia
AU - Ettedgui, Jessica
AU - Swenson, Rolf E.
AU - Krishna, Murali
AU - Theis, Thomas
AU - Goodson, Boyd M.
AU - Chekmenev, Eduard
PY - 2021
DA - 2021/12/09
PB - Wiley
IS - 2
VL - 23
PMID - 34813142
SN - 1439-4235
SN - 1439-7641
ER -
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BibTex (up to 50 authors)
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@article{2021_Adelabu,
author = {Isaiah Adelabu and Patrick TomHon and Mohammad S H Kabir and Shiraz Nantogma and Mustapha Abdulmojeed and Iuliia Mandzhieva and Jessica Ettedgui and Rolf E. Swenson and Murali Krishna and Thomas Theis and Boyd M. Goodson and Eduard Chekmenev},
title = {Order‐Unity 13 C Nuclear Polarization of [1‐ 13 C]Pyruvate in Seconds and the Interplay of Water and SABRE Enhancement},
journal = {ChemPhysChem},
year = {2021},
volume = {23},
publisher = {Wiley},
month = {dec},
url = {https://doi.org/10.1002/cphc.202100839},
number = {2},
doi = {10.1002/cphc.202100839}
}