Hyperpolarized 13C Metabolic MRI of the Human Heart: Initial Experience.

Cunningham, Charles H; Lau, Justin Y C; Chen, Albert P; Geraghty, Benjamin J; Perks, William J; Roifman, Idan; Wright, Graham A; Connelly, Kim A · Circ Res · 2016

prospective_cohort · Level II

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Abstract

Altered cardiac energetics is known to play an important role in the progression toward heart failure. A noninvasive method for imaging metabolic markers that could be used in longitudinal studies would be useful for understanding therapeutic approaches that target metabolism. To demonstrate the first hyperpolarized <sup>13</sup>C metabolic magnetic resonance imaging of the human heart. Four healthy subjects underwent conventional proton cardiac magnetic resonance imaging followed by <sup>13</sup>C imaging and spectroscopic acquisition immediately after intravenous administration of a 0.1 mmol/kg dose of hyperpolarized [1-<sup>13</sup>C]pyruvate. All subjects tolerated the procedure well with no adverse effects reported ≤1 month post procedure. The [1-<sup>13</sup>C]pyruvate signal appeared within the chambers but not within the muscle. Imaging of the downstream metabolites showed <sup>13</sup>C-bicarbonate signal mainly confined to the left ventricular myocardium, whereas the [1-<sup>13</sup>C]lactate signal appeared both within the chambers and in the myocardium. The mean <sup>13</sup>C image signal:noise ratio was 115 for [1-<sup>13</sup>C]pyruvate, 56 for <sup>13</sup>C-bicarbonate, and 53 for [1-<sup>13</sup>C]lactate. These results represent the first <sup>13</sup>C images of the human heart. The appearance of <sup>13</sup>C-bicarbonate signal after administration of hyperpolarized [1-<sup>13</sup>C]pyruvate was readily detected in this healthy cohort (n=4). This shows that assessment of pyruvate metabolism in vivo in humans is feasible using current technology. URL: https://www.clinicaltrials.gov. Unique identifier: NCT02648009.

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