Mapping Changes in Glutamate with Glutamate-Weighted MRI in Forced Swim Test Model of Depression in Rats

Chemical exchange saturation transfer with glutamate (GluCEST) imaging is a novel technique for the non-invasive detection and quantification of cerebral Glu levels in neuromolecular processes. Here we used GluCEST imaging and <sup>1</sup>H magnetic resonance spectroscopy (<sup>1&l...

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Bibliographic Details
Main Authors: Donghoon Lee, Chul-Woong Woo, Hwon Heo, Yousun Ko, Ji Sung Jang, Seongwon Na, Nari Kim, Dong-Cheol Woo, Kyung Won Kim, Do-Wan Lee
Format: Article
Language:English
Published: MDPI AG 2024-02-01
Series:Biomedicines
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Online Access:https://www.mdpi.com/2227-9059/12/2/384
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Summary:Chemical exchange saturation transfer with glutamate (GluCEST) imaging is a novel technique for the non-invasive detection and quantification of cerebral Glu levels in neuromolecular processes. Here we used GluCEST imaging and <sup>1</sup>H magnetic resonance spectroscopy (<sup>1</sup>H MRS) to assess in vivo changes in Glu signals within the hippocampus in a rat model of depression induced by a forced swim test. The forced swimming test (FST) group exhibited markedly reduced GluCEST-weighted levels and Glu concentrations when examined using <sup>1</sup>H MRS in the hippocampal region compared to the control group (GluCEST-weighted levels: 3.67 ± 0.81% vs. 5.02 ± 0.44%, <i>p</i> < 0.001; and Glu concentrations: 6.560 ± 0.292 μmol/g vs. 7.133 ± 0.397 μmol/g, <i>p</i> = 0.001). Our results indicate that GluCEST imaging is a distinctive approach to detecting and monitoring Glu levels in a rat model of depression. Furthermore, the application of GluCEST imaging may provide a deeper insight into the neurochemical involvement of glutamate in various psychiatric disorders.
ISSN:2227-9059