Hyperpolarized (13)C-labeled substrates directly provide a source of magnetic resonance (MR) signal to observe the substrates' real-time uptake and enzymatic conversion. The aim of this study was to optimize the concentration of hyperpolarized [1-(13)C]pyruvate infused as a metabolic tracer, by observing the mitochondrial conversion of pyruvate to H(13)CO(3)(-) in heart tissue. Hyperpolarized pyruvate was infused into rats at concentrations between 20 mM and 80 mM and the relationships between [1-(13)C]lactate, [1-(13)C]alanine, and H(13)CO(3)(-) production and the infused pyruvate concentration were investigated. H(13)CO(3)(-) production reached saturation above 40 mM infused pyruvate concentration, indicating that hyperpolarized MR experi...
Cardiac dysfunction is often associated with a shift in substrate preference for ATP production. Hyp...
Development of hyperpolarized technology utilizing dynamic nuclear polarization has enabled the meas...
Hyperpolarized [1-13C]pyruvate enables direct in vivo assessment of real-time liver enzymatic activi...
The application of magnetic resonance (MR) for metabolic imaging and spectroscopy has been limited b...
The advent of hyperpolarized magnetic resonance (MR) has provided new potential for real-time visual...
Hyperpolarization of 13C-labeled energy substrates enables the noninvasive detection and mapping of ...
Pyruvate dehydrogenase (PDH) is a key regulator of cardiac substrate selection and is regulated by b...
Cardiac dysfunction is often associated with a shift in substrate preference for ATP production. Hyp...
C MR spectroscopy studies performed on hearts ex vivo and in vivo following perfusion of prepolarize...
Alterations in cardiac metabolism are now considered a cause, rather than a result, of cardiac disea...
The Krebs cycle plays a fundamental role in cardiac energy production and is often implicated in the...
International audienceMany imaging methods have been proposed to act as surrogate markers of organ d...
Hyperpolarization via the Dynamic Nuclear Polarization (DNP) technique has revolutionized our abilit...
Hyperpolarized 13C magnetic resonance is a powerful tool for the study of cardiac metabolism. In thi...
Hyperpolarized C-13 MR measurements have the potential to display non-linear kinetics. We have devel...
Cardiac dysfunction is often associated with a shift in substrate preference for ATP production. Hyp...
Development of hyperpolarized technology utilizing dynamic nuclear polarization has enabled the meas...
Hyperpolarized [1-13C]pyruvate enables direct in vivo assessment of real-time liver enzymatic activi...
The application of magnetic resonance (MR) for metabolic imaging and spectroscopy has been limited b...
The advent of hyperpolarized magnetic resonance (MR) has provided new potential for real-time visual...
Hyperpolarization of 13C-labeled energy substrates enables the noninvasive detection and mapping of ...
Pyruvate dehydrogenase (PDH) is a key regulator of cardiac substrate selection and is regulated by b...
Cardiac dysfunction is often associated with a shift in substrate preference for ATP production. Hyp...
C MR spectroscopy studies performed on hearts ex vivo and in vivo following perfusion of prepolarize...
Alterations in cardiac metabolism are now considered a cause, rather than a result, of cardiac disea...
The Krebs cycle plays a fundamental role in cardiac energy production and is often implicated in the...
International audienceMany imaging methods have been proposed to act as surrogate markers of organ d...
Hyperpolarization via the Dynamic Nuclear Polarization (DNP) technique has revolutionized our abilit...
Hyperpolarized 13C magnetic resonance is a powerful tool for the study of cardiac metabolism. In thi...
Hyperpolarized C-13 MR measurements have the potential to display non-linear kinetics. We have devel...
Cardiac dysfunction is often associated with a shift in substrate preference for ATP production. Hyp...
Development of hyperpolarized technology utilizing dynamic nuclear polarization has enabled the meas...
Hyperpolarized [1-13C]pyruvate enables direct in vivo assessment of real-time liver enzymatic activi...