Lanz Bernard, Rackayova Veronika, Braissant Olivier, Cudalbu Cristina
Laboratory for Functional and Metabolic Imaging (LIFMET), Ecole Polytechnique Fédérale de Lausanne (EPFL), Lausanne, Switzerland; Sir Peter Mansfield Imaging Centre, School of Physics and Astronomy, University of Nottingham, Nottingham, United Kingdom.
Laboratory for Functional and Metabolic Imaging (LIFMET), Ecole Polytechnique Fédérale de Lausanne (EPFL), Lausanne, Switzerland.
Anal Biochem. 2017 Jul 15;529:245-269. doi: 10.1016/j.ab.2016.11.021. Epub 2016 Dec 23.
In vivo Magnetic Resonance Spectroscopy is a useful tool to characterize brain biochemistry as well as its alteration in a large number of major central nervous system diseases. The present review will focus on the study of the glutamate-glutamine cycle, an important biochemical pathway in excitatory neurotransmission, analyzed using in vivo MRS of different accessible nuclei: H, C, N and P. The different methodological aspects of data acquisition, processing and absolute quantification of the MRS data for each nucleus will be presented, as well as the description of the mathematical modeling approach to interpret the MRS measurements in terms of biochemical kinetics. The unique advantages of MRS, especially its non-invasive nature enabling longitudinal monitoring of brain disease progression and/or effect of treatment is illustrated in the particular context of hyperammonemic disorders with a specific focus on animal models. We review the current possibilities given by in vivo MRS to investigate some of the molecular mechanisms involved in hyperammonemic disorders and to give a better understanding of the process of development of hepatic encephalopathy, a severe neuropsychiatric disorder that frequently accompanies liver disease.
活体磁共振波谱是一种用于表征脑生物化学及其在大量主要中枢神经系统疾病中变化的有用工具。本综述将聚焦于谷氨酸 - 谷氨酰胺循环的研究,这是兴奋性神经传递中的一条重要生化途径,通过对不同可及核(氢、碳、氮和磷)的活体磁共振波谱进行分析。将介绍针对每个核的磁共振波谱数据采集、处理和绝对定量的不同方法学方面,以及根据生化动力学解释磁共振波谱测量结果的数学建模方法的描述。磁共振波谱的独特优势,特别是其非侵入性性质能够纵向监测脑部疾病进展和/或治疗效果,在高氨血症性疾病的特定背景下,尤其以动物模型为重点进行了阐述。我们综述了活体磁共振波谱目前在研究高氨血症性疾病中涉及的一些分子机制以及更好地理解肝性脑病(一种常伴随肝脏疾病的严重神经精神障碍)发展过程方面的可能性。