Radical-free hyperpolarized MRI using endogenously-occurring pyruvate analogues and UV-induced nonpersistent radicals
Claudia C Zanella, Andrea Capozzi, Hikari AI Yoshihara, Alice, Radaelli, Lionel P Arn, Rolf Gruetter, Jessica AM Bastiaansen

TL;DR
This study explores using endogenous metabolites alpha-ketovalerate and alpha-ketobutyrate as UV-induced radical precursors for radical-free hyperpolarized MRI, achieving high polarization levels and simplifying clinical application procedures.
Contribution
It introduces novel endogenous metabolite analogues as radical precursors for hyperpolarized MRI, expanding options beyond pyruvate for safer, more effective imaging.
Findings
AKB increased 13C-labeled glucose polarization to 16.3%.
AKV and AKB achieved over 12% polarization in butyrate.
Hyperpolarized metabolites showed metabolic incorporation in the heart.
Abstract
It was demonstrated that nonpersistent radicals can be generated in frozen solutions of metabolites such as pyruvate by irradiation with ultraviolet (UV) light, enabling radical-free dissolution DNP. Although pyruvate is endogenous, an excess of additional pyruvate may perturb metabolic processes, making it potentially unsuitable as a polarizing agent when studying fatty acids or carbohydrate metabolism. Therefore, the aim of the study was to characterize solutions containing endogenously-occurring alternatives to pyruvate as UV-induced nonpersistent radical precursors for in vivo hyperpolarized MRI. The metabolites alpha-ketovalerate (AKV) and alpha-ketobutyrate (AKB) are analogues of pyruvate and were chosen as potential radical precursors. Sample formulations containing AKV and AKB were studied with UV-visible spectroscopy, irradiated with UV light, and their nonpersistent radical…
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