Schmitz Birte, Wang Xin, Barker Peter B, Pilatus Ulrich, Bronzlik Paul, Dadak Mete, Kahl Kai G, Lanfermann Heinrich, Ding Xiao-Qi
Institute of Diagnostic and Interventional Neuroradiology, Hannover Medical School, Germany.
Russell H Morgan Department of Radiology and Radiological Science, Johns Hopkins University School of Medicine, Baltimore, MD.
J Neuroimaging. 2018 Jul;28(4):416-421. doi: 10.1111/jon.12514. Epub 2018 Apr 9.
To investigate accumulative aging effects on neurometabolism in human brain and to collect a reference dataset.
Fifty-four healthy volunteers aged evenly between 22 and 73 years were studied using whole-brain H-MR spectroscopic imaging in combination with P-MRS at 3T. Global metabolite concentrations of brain N-acetylaspartate (NAA), total choline (tCho), and total creatine (tCr), as well as phosphocreatine (PCr), adenosine-5'-triphosphate (ATP), phosphomonoesters (PME), phosphodiesters (PDE), and inorganic phosphate (Pi) were determined. Fractional volumes of brain gray matter (FVGM), white matter (FVWM), and total tissue (FVTB, GM+WM) were also estimated.
With age, NAA, ATP, and PME, as well as FVTB and FVGM decreased and tCho and FVWM increased linearly. Positive correlations were found between FVGM and global concentrations of NAA, ATP, PME, and Pi.
Age-related accumulative metabolic changes in aging human brain correlated with reduced neuronal metabolic activity and density, reflected by decreased NAA, reduced mitochondrial activity by decreased ATP, and reduced membrane synthesis by decreased PME. These changes are associated with age-related decrease of neuronal volume. Global NAA and ATP might be used as surrogate biomarker for monitoring aging in human brain.
研究累积衰老对人脑神经代谢的影响并收集一个参考数据集。
对54名年龄在22至73岁之间的健康志愿者进行研究,采用3T全脑氢磁共振波谱成像结合磷磁共振波谱分析。测定脑内N-乙酰天门冬氨酸(NAA)、总胆碱(tCho)、总肌酸(tCr)以及磷酸肌酸(PCr)、三磷酸腺苷(ATP)、磷酸单酯(PME)、磷酸二酯(PDE)和无机磷酸盐(Pi)的整体代谢物浓度。还估算了脑灰质(FVGM)、白质(FVWM)和总组织(FVTB,GM+WM)的分数体积。
随着年龄增长,NAA、ATP和PME以及FVTB和FVGM降低,而tCho和FVWM呈线性增加。FVGM与NAA、ATP、PME和Pi的整体浓度之间存在正相关。
衰老人脑与年龄相关的累积代谢变化与神经元代谢活性和密度降低相关,表现为NAA降低反映神经元代谢活性降低,ATP降低反映线粒体活性降低,PME降低反映膜合成减少。这些变化与神经元体积随年龄的减小有关。整体NAA和ATP可用作监测人脑衰老的替代生物标志物。