在 9.4 T 下口服[1-13C]葡萄糖后测量枕叶和额叶皮层的葡萄糖代谢。

Theresia Ziegs, Johanna Dorst, Loreen Ruhm, Nikolai Avdievitch, Anke Henning
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引用次数: 0

摘要

这是首次在 9.4 T 下通过纯 1H 检测观察到人脑在口服 [1-13C]glucose 后的标记效应。使用短程 1H MRS MC-semiLASER(通过绝热选择性重聚焦进行代谢物循环半定位)序列在额叶皮层和枕叶的两个 5.4 mL 的体素中获取了光谱时间序列。该研究获得了志愿者个人的[4-13C]谷氨酸、[4-13C]谷氨酰胺、[3-13C]谷氨酸+谷氨酰胺、[2-13C]谷氨酸+谷氨酰胺和[3-13C]天冬氨酸的高质量时间序列,以及标记和非标记脑葡萄糖的组平均时间序列。利用单室模型,计算出每个体素位置的平均代谢率:TCA循环的平均速率(Vtca)分别为1.36和0.93 μmol min-1 g-1,谷氨酰胺合成的平均速率(Vgln)分别为0.23和0.45 μmol min-1 g-1,细胞膜氨基酸与线粒体克雷布斯循环中间产物之间的平均交换速率(Vx)分别为0.57和1.21 μmol min-1 g-1。这些数值与之前报道的数据一致。总之,可以证明这种结合口服 [1-13C]Glc 和纯 1H MRS 采集的最简单技术适用于测量代谢率。
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Measurement of glucose metabolism in the occipital lobe and frontal cortex after oral administration of [1-13C]glucose at 9.4 T.

For the first time, labeling effects after oral intake of [1-13C]glucose are observed in the human brain with pure 1H detection at 9.4 T. Spectral time series were acquired using a short-TE 1H MRS MC-semiLASER (Metabolite Cycling semi Localization by Adiabatic SElective Refocusing) sequence in two voxels of 5.4 mL in the frontal cortex and the occipital lobe. High-quality time-courses of [4-13C]glutamate, [4-13C]glutamine, [3-13C]glutamate + glutamine, [2-13C] glutamate+glutamine and [3-13C]aspartate for individual volunteers and additionally, group-averaged time-courses of labeled and non-labeled brain glucose could be obtained. Using a one-compartment model, mean metabolic rates were calculated for each voxel position: The mean rate of the TCA-cycle (Vtca) value was determined to be 1.36 and 0.93 μmol min-1 g-1, the mean rate of glutamine synthesis (Vgln) was calculated to be 0.23 and 0.45 μmol min-1 g-1, the mean exchange rate between cytosolic amino acids and mitochondrial Krebs cycle intermediates (Vx) rate was found to be 0.57 and 1.21 μmol min-1 g-1 for the occipital lobe and the frontal cortex, respectively. These values were in agreement with previously reported data. Altogether, it can be shown that this most simple technique combining oral administration of [1-13C]Glc with pure 1H MRS acquisition is suitable to measure metabolic rates.

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