Crémillieux Yannick, Dumont Ursule, Mazuel Leslie, Salvati Roberto, Zhendre Vanessa, Rizzitelli Silvia, Blanc Jordy, Roumes Hélène, Pinaud Noël, Bouzier-Sore Anne-Karine
Université de Bordeaux, Bordeaux, France.
UMR5255 Institut des Sciences Moléculaires (ISM), Talence, France.
Front Cell Neurosci. 2019 Mar 19;13:89. doi: 10.3389/fncel.2019.00089. eCollection 2019.
The dynamic profiling of lactate is of uppermost importance in both neuroenergetics and neuroprotection fields, considering its central suspected role as a metabolic and signaling molecule. For this purpose, we implemented proton magnetic resonance spectroscopy (H-MRS) directly on brain microdialysate to monitor online the fluctuation of lactate contents during neuronal stimulation. Brain activation was obtained by right whisker stimulation of rats, which leads to the activation of the left barrel cortex area in which the microdialysis probe was implanted. The experimental protocol relies on the use of dedicated and sensitive home-made NMR microcoil able to perform lactate NMR profiling at submillimolar concentration. The MRS measurements of extracellular lactate concentration were performed inside a pre-clinical MRI scanner allowing simultaneous visualization of the correct location of the microprobe by MRI and detection of metabolites contained in the microdialysis by MRS. A 40% increase in lactate concentration was measured during whisker stimulation in the corresponding barrel cortex. This combination of microdialysis with online MRS/MRI provides a new approach to follow lactate fluctuations, and can be further implemented in physio-pathological conditions to get new insights on the role of lactate in brain metabolism and signaling.
考虑到乳酸作为一种代谢和信号分子的核心可疑作用,其动态分析在神经能量学和神经保护领域都至关重要。为此,我们直接在脑微透析液上实施质子磁共振波谱(H-MRS),以在线监测神经元刺激期间乳酸含量的波动。通过对大鼠右侧胡须进行刺激来实现脑激活,这会导致植入微透析探针的左侧桶状皮质区域被激活。该实验方案依赖于使用专用且灵敏的自制NMR微线圈,该微线圈能够在亚毫摩尔浓度下进行乳酸NMR分析。细胞外乳酸浓度的MRS测量是在临床前MRI扫描仪内进行的,这使得通过MRI能够同时可视化微探针的正确位置,并通过MRS检测微透析液中所含的代谢物。在相应的桶状皮质中,胡须刺激期间测得乳酸浓度增加了40%。这种微透析与在线MRS/MRI的结合提供了一种跟踪乳酸波动的新方法,并且可以在生理病理条件下进一步实施,以深入了解乳酸在脑代谢和信号传导中的作用。