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通过7T场强下的GluCEST磁共振成像和静息态功能磁共振成像对放射性脑损伤进行临床前监测:一项关于磁共振成像引导下避免危及器官的探索性研究

Preclinical monitoring of radiation-induced brain injury via GluCEST MRI and resting-state fMRI at 7 T: an exploratory study on MRI-guided OAR avoidance.

作者信息

Li Guodong, Li Hao, Weng Na, Liu Caiyun, Li Xianglin, Li Qinglong, Bin Li, Zhu Kai, Huang Danqi, Liu Jia, Liu Yan, Wang Xu

机构信息

Department of Nuclear Medicine, Binzhou Medical University Hospital, School of Medical Imaging, Binzhou Medical University, Shandong, China.

出版信息

Strahlenther Onkol. 2025 Apr;201(4):411-419. doi: 10.1007/s00066-024-02292-w. Epub 2024 Sep 11.

Abstract

PURPOSE

To assess the value of glutamate chemical exchange saturation transfer (GluCEST) after whole-brain radiotherapy (WBRT) as an imaging marker of radiation-induced brain injury (RBI) and to preliminarily show the feasibility of multiparametric MRI-guided organ at risk (OAR) avoidance.

METHODS

Rats were divided into two groups: the control (CTRL) group (n = 9) and the RBI group (n = 9). The rats in the RBI group were irradiated with an X‑ray radiator and then subjected to a water maze experiment 4 weeks later. In combination with high-performance liquid chromatography (HPLC), we evaluated the value of GluCEST applied to glutamate changes for RBI and investigated the effect of such changes on glutamatergic neuronal function.

RESULTS

The average GluCEST values were markedly lower in the hippocampus and cerebral cortex. Positive correlations were observed between GluCEST values and regional homogeneity (ReHo) values in both the hippocampus and the cerebral cortex. HPLC showed a positive correlation with GluCEST values in the hippocampus. GluCEST values were positively correlated with spatial memory.

CONCLUSION

GluCEST MRI provides a visual assessment of glutamate changes in RBI rats for monitoring OAR cognitive toxicity reactions and may be used as a biomarker of OAR avoidance as well as metabolism to facilitate monitoring and intervention in radiation damage that occurs after radiotherapy.

摘要

目的

评估全脑放疗(WBRT)后谷氨酸化学交换饱和转移(GluCEST)作为放射性脑损伤(RBI)成像标志物的价值,并初步展示多参数MRI引导下避免危及器官(OAR)的可行性。

方法

将大鼠分为两组:对照组(CTRL,n = 9)和RBI组(n = 9)。RBI组大鼠接受X射线辐射,4周后进行水迷宫实验。结合高效液相色谱(HPLC),我们评估了GluCEST应用于RBI中谷氨酸变化的价值,并研究了这种变化对谷氨酸能神经元功能的影响。

结果

海马体和大脑皮层的平均GluCEST值明显较低。在海马体和大脑皮层中,GluCEST值与局部一致性(ReHo)值之间均观察到正相关。HPLC显示与海马体中的GluCEST值呈正相关。GluCEST值与空间记忆呈正相关。

结论

GluCEST MRI为监测RBI大鼠的谷氨酸变化以评估OAR认知毒性反应提供了直观评估,并且可作为避免OAR以及代谢的生物标志物,以促进对放疗后发生的放射性损伤的监测和干预。

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