Robust Imidazole-15N2 Synthesis for High-Resolution Low-Field (0.05 T) 15N Hyperpolarized NMR Spectroscopy Научная публикация
Журнал |
ChemistrySelect
, E-ISSN: 2365-6549 |
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Вых. Данные | Год: 2017, Том: 2, Номер: 16, Страницы: 4478-4483 Страниц : 6 DOI: 10.1002/slct.201700718 | ||||||||||||||||||
Ключевые слова | 15N NMR spectroscopy, hyperpolarization, isotopic enrichment, parahydrogen, SABRE-SHEATH | ||||||||||||||||||
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Организации |
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Информация о финансировании (11)
1 | Федеральное агентство научных организаций России | 0303-2015-0010 |
2 | Российский фонд фундаментальных исследований | 16-03-00407 |
3 | Министерство образования и науки Российской Федерации | МК-4498.2016.3 |
4 | National Institutes of Health | 1R21EB018014 |
5 | National Institutes of Health | 1R21EB020323 |
6 | National Science Foundation | CHE-1416268 |
7 | United States Department of Defense | W81XWH-12-1-0159/BC112431 |
8 | United States Department of Defense | W81XWH-15-1-0271 |
9 | National Science Foundation | CHE-1416432 |
10 | United States Department of Defense | W81XWH-15-1-0272 |
11 | Федеральное агентство научных организаций России | V.44.1.8. (0333-2016-0001) |
Реферат:
NMR hyperpolarization techniques have the potential to revolutionize the field of NMR spectroscopy and molecular MRI because they can transiently enhance nuclear spin polarization by 4–8 orders of magnitude, with corresponding gains in NMR signal-to-noise ratio (SNR). The SABRE-SHEATH (Signal Amplification By Reversible Exchange in SHield Enables Alignment Transfer to Heteronuclei) technique, first demonstrated in 2015, allows for direct, efficient (>20 % nuclear spin polarization), and fast (in under one minute) hyperpolarization of 15N sites. Several classes of biologically relevant 15N hyperpolarized contrast agents have been efficiently hyperpolarized to date including pH sensors, which can be potentially useful for non-invasive pH imaging of cancer and other diseases with altered metabolism. Here, we report the optimized 15N enrichment of imidazole-15N2 – a promising in vivo pH sensor with pKa ∼ 7.0. A hyperpolarized 0.1 M aqueous solution (ϵ15N ∼ 146,000 fold, P15N ∼ 0.24 %) was used to record 15N NMR spectra at 0.05 T, demonstrating the feasibility of high-resolution (full width at half maximum ∼ 1 Hz corresponding to 5 ppm at 0.05 T) NMR spectroscopy near its pKa (7.0) at ultra-low magnetic field. Given that proton-binding events modulate the chemical shift by ∼ 30 ppm for this pH-sensing probe, our results demonstrate the feasibility of ultra-low-field pH sensing near its pKa (7.0) with SNR approaching that of high-field (9.4 T) MR.
Библиографическая ссылка:
Shchepin R.V.
, Barskiy D.A.
, Coffey A.M.
, Feldman M.A.
, Kovtunova L.M.
, Bukhtiyarov V.I.
, Kovtunov K.V.
, Goodson B.M.
, Koptyug I.V.
, Chekmenev E.Y.
Robust Imidazole-15N2 Synthesis for High-Resolution Low-Field (0.05 T) 15N Hyperpolarized NMR Spectroscopy
ChemistrySelect. 2017.
V.2. N16. P.4478-4483. DOI: 10.1002/slct.201700718
WOS
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OpenAlex
Robust Imidazole-15N2 Synthesis for High-Resolution Low-Field (0.05 T) 15N Hyperpolarized NMR Spectroscopy

Файлы:
Полный текст от издателя
Даты:
Поступила в редакцию: | 5 апр. 2017 г. |
Принята к публикации: | 19 мая 2017 г. |
Опубликована в печати: | 31 мая 2017 г. |
Опубликована online: | 1 июн. 2017 г. |
Идентификаторы БД:
Web of science: | WOS:000403256200027 |
Scopus: | 2-s2.0-85021254253 |
РИНЦ: | 35479206 |
Chemical Abstracts: | 2017:963145 |
OpenAlex: | W2620576658 |