Development of a <sup>31</sup>P magnetic resonance spectroscopy technique to quantify NADH and NAD<sup>+</sup> at 3 T.

Mevenkamp, Julian; Bruls, Yvonne M H; Mancilla, Rodrigo; Grevendonk, Lotte; Wildberger, Joachim E; Brouwers, Kim; Hesselink, Matthijs K C; Schrauwen, Patrick et al. · Nat Commun · 2024

basic_science · Level V

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Abstract

NADH and NAD<sup>+</sup> act as electron donors and acceptors and NAD<sup>+</sup> was shown to stimulate mitochondrial biogenesis and metabolic health. We here develop a non-invasive Phosphorous Magnetic Resonance Spectroscopy (<sup>31</sup>P-MRS) method to quantify these metabolites in human skeletal muscle on a clinical 3 T MRI scanner. This new MR-sequence enables NADH and NAD+ quantification by suppressing α-ATP signal, normally overlapping with NADH and NAD<sup>+</sup>. The sequence is based on a double spin echo in combination with a modified z-Filter achieving strong α-ATP suppression with little effect on NAD<sup>+</sup> and NADH. Here we test and validate it in phantoms and in humans by measuring reproducibility and detecting a physiological decrease in NAD<sup>+</sup> and increase in NADH induced by ischemia. Furthermore, the <sup>31</sup>P-MRS outcomes are compared to analysis in biopsies. Additionally, we show higher NAD<sup>+</sup> and lower NADH content in physically active older adults compared to sedentary individuals, reflecting increased metabolic health.

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