Direct assessment of renal mitochondrial redox state using hyperpolarized C-acetoacetate.

TitleDirect assessment of renal mitochondrial redox state using hyperpolarized C-acetoacetate.
Publication TypeJournal Article
Year of Publication2018
Authorsvon Morze C, Ohliger MA, Marco-Rius I, Wilson DM, Flavell RR, Pearce D, Vigneron DB, Kurhanewicz J, Wang ZJ
JournalMagn Reson Med
Volume79
Issue4
Pagination1862-1869
Date Published2018 Apr
ISSN1522-2594
Abstract

PURPOSE: The purpose of this study was to investigate the hyperpolarized ketone body C-acetoacetate (AcAc) and its conversion to C-β-hydroxybutyrate (βOHB) in vivo, catalyzed by β-hydroxybutyrate dehydrogenase (BDH), as a novel direct marker of mitochondrial redox state.

METHODS: [1,3- C ]AcAc was synthesized by hydrolysis of the ethyl ester, and hyperpolarized via dissolution DNP. Cold storage under basic conditions resulted in sufficient chemical stability for use in hyperpolarized (HP) MRI studies. Polarizations and relaxation times of HP [1,3- C ]AcAc were measured in a clinical 3T MRI scanner, and 8 rats were scanned by dynamic HP C MR spectroscopy of a slab through the kidneys. Four rats were scanned after acute treatment with high dose metformin (125 mg/kg, intravenous), which is known to modulate mitochondrial redox via inhibition of mitochondrial complex I. An additional metformin-treated rat was scanned by abdominal 2D CSI (8 mm × 8 mm).

RESULTS: Polarizations of 7 ± 1% and 7 ± 3%, and T relaxation times of 58 ± 5 s and 52 ± 3 s, were attained at the C and C positions, respectively. Rapid conversion of HP AcAc to βOHB was detected in rat kidney in vivo, via the C label. The product HP βOHB was resolved from closely resonating acetate. Conversion to βOHB was also detected via 2D CSI, in both kidney as well as liver regions. Metformin treatment resulted in a significant increase (40%, P = 0.01) of conversion of HP AcAc to βOHB.

CONCLUSION: Rapid conversion of HP AcAc to βOHB was observed in rat kidney in vivo and is a promising new non-invasive marker of mitochondrial redox state. Magn Reson Med 79:1862-1869, 2018. © 2017 International Society for Magnetic Resonance in Medicine.

DOI10.1002/mrm.27054
Alternate JournalMagn Reson Med
PubMed ID29314217
PubMed Central IDPMC5815327
Grant ListK01 DK099451 / DK / NIDDK NIH HHS / United States
P41 EB013598 / EB / NIBIB NIH HHS / United States
R01 DK097357 / DK / NIDDK NIH HHS / United States

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