Ahmadian Narjes, Jacobs Sarah M, Gosselink Mark, van der Kemp Wybe J M, Hoogduin Hans, Coppoli Anastasia, Mason Graeme F, de Graaf Robin A, Norouzizadeh Helia, Mahon Chantal, Eijsden Pieter van, Tiessen Renger, Cerneus Dirk, Miller Corin O, Lepeleire Inge De, Basile Anthony S, Klomp Dennis W J, Prompers Jeanine J, Wiegers Evita C
Center for Image Sciences, University Medical Center Utrecht, Utrecht, the Netherlands.
Neurosurgery, University Medical Center Utrecht, Utrecht, the Netherlands.
NMR Biomed. 2025 May;38(5):e70026. doi: 10.1002/nbm.70026.
Glutamate (Glu) is the major excitatory neurotransmitter in the central nervous system. The measurement of Glu/glutamine (Gln) neurotransmitters in the brain provides valuable insights into the dynamic aspects of neuroenergetics and neurotransmitter cycles and can be accomplished through the detection of C-labeling of Glu and Gln during the administration of C-labeled glucose. Our goal is to evaluate the reproducibility of selective proton-observed, carbon-edited (selPOCE) MRS at 7 T for the detection of C-labeled Glu and Gln in the human brain. Data of three healthy participants, who were scanned twice at 7 T while undergoing [U-C]-glucose infusion for 120 min, were used to detect C-labeled Glu and Gln in the brain, using selPOCE-STEAM-MRS. There was a rapid increase of plasma glucose C fractional enrichment (FE) during the first 20 min of infusion, followed by a steady state of plasma glucose C FE until the end of the [U-C]-glucose infusion. The time courses of C-labeling of Glu and Gln were similar for test/retest. The test/retest variability was 15.8% for C-Glu and 33.3% for C-Gln. Knowing the variability of these readings using selPOCE-STEAM-MRS can inform the application to future studies on disease-specific alterations in Glu/Gln cycling.
谷氨酸(Glu)是中枢神经系统中的主要兴奋性神经递质。测量大脑中的Glu/谷氨酰胺(Gln)神经递质能为神经能量学和神经递质循环的动态方面提供有价值的见解,并且可以通过在给予碳标记葡萄糖期间检测Glu和Gln的碳标记来实现。我们的目标是评估7T下选择性质子观测、碳编辑(selPOCE)磁共振波谱(MRS)在检测人脑中碳标记的Glu和Gln时的可重复性。三名健康参与者的数据被用于在大脑中检测碳标记的Glu和Gln,这些参与者在接受[U-¹³C]-葡萄糖输注120分钟的同时在7T下进行了两次扫描,采用selPOCE-STEAM-MRS。在输注的前20分钟内,血浆葡萄糖碳分数富集(FE)迅速增加,随后血浆葡萄糖碳FE保持稳定状态直至[U-¹³C]-葡萄糖输注结束。Glu和Gln的碳标记时间进程在测试/重测中相似。碳标记Glu的测试/重测变异性为15.8%,碳标记Gln的为33.3%。了解使用selPOCE-STEAM-MRS这些读数的变异性可为未来关于Glu/Gln循环中疾病特异性改变的研究应用提供参考。