Cuenoud Bernard, Ipek Özlem, Shevlyakova Maya, Beaumont Maurice, Cunnane Stephen C, Gruetter Rolf, Xin Lijing
Nestlé Health Science, Lausanne, Switzerland.
School of Biomedical Imaging & Imaging Sciences, King's College London, London, United Kingdom.
Front Aging Neurosci. 2020 Dec 16;12:609517. doi: 10.3389/fnagi.2020.609517. eCollection 2020.
The brain requires a large amount of energy, mostly derived from the metabolism of glucose, which decreases substantially with age and neurological diseases. While mounting evidence in model organisms illustrates the central role of brain nicotinamide adenine dinucleotide (NAD) for maintaining energy homeostasis, similar data are sparse in humans. This study explores the correlations between brain NAD, energy production and membrane phospholipid metabolism by 31-phosphorous magnetic resonance spectroscopy (P-MRS) across 50 healthy participants including a young (mean age 27.1-year-old) and middle-aged (mean age 56.4-year-old) group. The analysis revealed that brain NAD level and NAD/NADH redox ratio were positively associated with ATP level and the rate of energy production, respectively. Moreover, a metabolic network linking NAD with membrane phospholipid metabolism, energy production, and aging was identified. An inverted trend between age and NAD level was detected. These results pave the way for the use of P-MRS as a powerful non-invasive tool to support the development of new therapeutic interventions targeting NAD associated phospho-metabolic pathways in brain aging and neurological diseases.
大脑需要大量能量,这些能量大多来自葡萄糖的代谢,而葡萄糖代谢会随着年龄增长和神经疾病大幅下降。虽然模式生物中越来越多的证据表明大脑烟酰胺腺嘌呤二核苷酸(NAD)在维持能量稳态方面起着核心作用,但人类方面的类似数据却很少。本研究通过31磷磁共振波谱(P-MRS),对包括年轻组(平均年龄27.1岁)和中年组(平均年龄56.4岁)在内的50名健康参与者,探究大脑NAD、能量产生与膜磷脂代谢之间的相关性。分析表明,大脑NAD水平和NAD/NADH氧化还原比率分别与ATP水平和能量产生速率呈正相关。此外,还确定了一个将NAD与膜磷脂代谢、能量产生和衰老联系起来的代谢网络。检测到年龄与NAD水平之间呈相反趋势。这些结果为将P-MRS用作一种强大的非侵入性工具铺平了道路,以支持开发针对大脑衰老和神经疾病中与NAD相关的磷酸代谢途径的新治疗干预措施。