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胼胝体脱髓鞘和髓鞘再生过程中体内谷氨酸信号的时间变化:一项谷氨酸加权化学交换饱和转移成像研究

Temporal Changes in In Vivo Glutamate Signal during Demyelination and Remyelination in the Corpus Callosum: A Glutamate-Weighted Chemical Exchange Saturation Transfer Imaging Study.

作者信息

Lee Do-Wan, Heo Hwon, Woo Chul-Woong, Woo Dong-Cheol, Kim Jeong-Kon, Kim Kyung-Won, Lee Dong-Hoon

机构信息

Department of Radiology, Asan Medical Center, University of Ulsan College of Medicine, Seoul 05505, Korea.

Department of Convergence Medicine, Asan Medical Center, University of Ulsan College of Medicine, Seoul 05505, Korea.

出版信息

Int J Mol Sci. 2020 Dec 12;21(24):9468. doi: 10.3390/ijms21249468.

Abstract

BACKGROUND

Glutamate-weighted chemical exchange saturation transfer (GluCEST) is a useful imaging tool that can be used to detect changes in glutamate levels in vivo and could also be helpful in the diagnosis of brain myelin changes. We investigated glutamate level changes in the cerebral white matter of a rat model of cuprizone-administered demyelination and remyelination using GluCEST.

METHOD

We used a 7 T pre-clinical magnetic resonance imaging (MRI) system. The rats were divided into the normal control (CTRL), cuprizone-administered demyelination (CPZ), and remyelination (CPZ) groups. GluCEST data were analyzed using the conventional magnetization transfer ratio asymmetry in the corpus callosum. Immunohistochemistry and transmission electron microscopy analyses were also performed to investigate the myelinated axon changes in each group.

RESULTS

The quantified GluCEST signals differed significantly between the CPZ and CTRL groups (-7.25 ± 1.42% vs. -2.84 ± 1.30%; = 0.001). The increased GluCEST signals in the CPZ group decreased after remyelination (-6.52 ± 1.95% in CPZ) to levels that did not differ significantly from those in the CTRL group ( = 0.734).

CONCLUSION

The apparent temporal signal changes in GluCEST imaging during demyelination and remyelination demonstrated the potential usefulness of GluCEST imaging as a tool to monitor the myelination process.

摘要

背景

谷氨酸加权化学交换饱和转移(GluCEST)是一种有用的成像工具,可用于检测体内谷氨酸水平的变化,也有助于诊断脑髓鞘变化。我们使用GluCEST研究了用铜螯合剂诱导脱髓鞘和再髓鞘化大鼠模型脑白质中谷氨酸水平的变化。

方法

我们使用了一台7T临床前磁共振成像(MRI)系统。将大鼠分为正常对照组(CTRL)、铜螯合剂诱导脱髓鞘组(CPZ)和再髓鞘化组(CPZ)。使用胼胝体中传统的磁化转移率不对称性分析GluCEST数据。还进行了免疫组织化学和透射电子显微镜分析,以研究每组中有髓轴突的变化。

结果

CPZ组和CTRL组之间的定量GluCEST信号存在显著差异(-7.25±1.42%对-2.84±1.30%;P = 0.001)。CPZ组中增加的GluCEST信号在再髓鞘化后下降(CPZ组为-6.52±1.95%),降至与CTRL组无显著差异的水平(P = 0.734)。

结论

脱髓鞘和再髓鞘化过程中GluCEST成像明显的时间信号变化表明,GluCEST成像作为监测髓鞘形成过程的工具具有潜在的实用性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bafa/7764201/a75f459a31c7/ijms-21-09468-g001.jpg

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