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Enhancing the [13C]bicarbonate signal in cardiac hyperpolarized [1‐13C]pyruvate MRS studies by infusion of glucose,insulin and potassium
Authors:Mette Hauge Lauritzen  Christoffer Laustsen  Sadia Asghar Butt  Peter Magnusson  Lise Vejby Søgaard  Jan Henrik Ardenkjær‐Larsen  Per Åkeson
Institution:1. Danish Research Centre for Magnetic Resonance (DRCMR), Copenhagen University Hospital Hvidovre, , Hvidovre, Denmark;2. MR Research Centre, Institute of Clinical Medicine, Aarhus University Hospital, , Aarhus, Denmark;3. GE Healthcare, , Br?ndby, Denmark;4. Technical University of Denmark, Department of Electrical Engineering, , Kgs Lyngby, Denmark
Abstract:A change in myocardial metabolism is a known effect of several diseases. MRS with hyperpolarized 13C‐labelled pyruvate is a technique capable of detecting changes in myocardial pyruvate metabolism, and has proven to be useful for the evaluation of myocardial ischaemia in vivo. However, during fasting, the myocardial glucose oxidation is low and the fatty acid oxidation (β‐oxidation) is high, which complicates the interpretation of pyruvate metabolism with the technique. The aim of this study was to investigate whether the infusion of glucose, insulin and potassium (GIK) could increase the myocardial glucose oxidation in the citric acid cycle, reflected as an increase in the 13C]bicarbonate signal in cardiac hyperpolarized 1‐13C]pyruvate MRS measurements in fasted rats. Two groups of rats were infused with two different doses of GIK and investigated by MRS after injection of hyperpolarized 1‐13C]pyruvate. No 13C]bicarbonate signal could be detected in the fasted state. However, a significant increase in the 13C]bicarbonate signal was observed by the infusion of a high dose of GIK. This study demonstrates that a high 13C]bicarbonate signal can be achieved by GIK infusion in fasted rats. The increased 13C]bicarbonate signal indicates an increased flux of pyruvate through the pyruvate dehydrogenase enzyme complex and an increase in myocardial glucose oxidation through the citric acid cycle. Copyright © 2013 John Wiley & Sons, Ltd.
Keywords:hyperpolarization  13C  MRS  cardiac metabolism  pyruvate dehydrogenase  glucose  insulin
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