Metabolic Analysis of Ongoing Neuropsychiatric Symptoms Post SARS-COV-2 Through Magnetic Resonance Spectroscopy

IF 1.3 Q3 RADIOLOGY, NUCLEAR MEDICINE & MEDICAL IMAGING Journal of Medical Imaging and Radiation Sciences Pub Date : 2024-10-01 DOI:10.1016/j.jmir.2024.101493
Yanfei Bi (Metabolic Analysis of Ongoing Neuropsychiatric Symptoms Post SARS-COV-2 Through Magnetic Resonance Spectroscopy)
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Abstract

Background

Previous research has established that SARS-COV-2 infection not only leads to acute systemic damage but also results in persistent symptoms, collectively known as "long-term COVID." Our research aims to verify whether the sustained presence of neuro-psychiatric symptoms after SARS-COV-2 infection is linked to changes in the metabolite GABA and/or an imbalance in excitatory-inhibitory (E/I) function.

Methods

Using Magnetic Resonance Spectroscopy (MRS) techniques, we investigated the levels of metabolites (GABA and Glx) and the excitatory-inhibitory balance (E/I) in the rACC and dACC brain regions, examining differences between two groups. Anxiety and depression states were assessed in all participants (37 in the infection group, 44 in the control group).

Results

In the rACC brain region, the study revealed higher GABA levels (p=0.004) and depression scores (p=0.001) in the COVID-19 infection group compared to the control group. The previously established excitatory-inhibitory balance (E/I) was disrupted (p=0.056, r=0.317). Additionally, depression scores and GABA concentration in the COVID-19 infection group showed a positive correlation (p=0.026, r=0.366), and Glx/GABA exhibited a negative correlation (p=0.019, r=-0.384).

Conclusion

The precise pathological mechanisms of "long-term COVID" remain incompletely understood. Our study suggests that in patients post COVID-19 infection, elevated GABA levels beyond normal may trigger a range of neuro-psychiatric symptoms and emotional changes by disrupting the excitatory-inhibitory balance. The implicated physiological processes include the activation of the transporter protein TSPO and the initiation of long neural circuits within the brain.
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通过磁共振波谱分析 SARS-COV-2 后持续神经精神症状的代谢情况
背景以前的研究已经证实,SARS-COV-2 感染不仅会导致急性全身性损害,还会造成持续性症状,统称为 "长期 COVID"。我们的研究旨在验证 SARS-COV-2 感染后神经-精神症状的持续存在是否与代谢物 GABA 的变化和/或兴奋-抑制(E/I)功能的失衡有关。方法我们利用磁共振波谱(MRS)技术调查了 rACC 和 dACC 脑区代谢物(GABA 和 Glx)的水平和兴奋-抑制平衡(E/I),并研究了两组之间的差异。研究结果显示,在 rACC 脑区,与对照组相比,COVID-19 感染组的 GABA 水平更高(p=0.004),抑郁评分更高(p=0.001)。之前建立的兴奋-抑制平衡(E/I)被打破(p=0.056,r=0.317)。此外,COVID-19 感染组的抑郁评分与 GABA 浓度呈正相关(p=0.026,r=0.366),Glx/GABA 呈负相关(p=0.019,r=-0.384)。我们的研究表明,在 COVID-19 感染后的患者中,GABA 水平升高超过正常值可能会通过破坏兴奋-抑制平衡而引发一系列神经-精神症状和情绪变化。其中涉及的生理过程包括激活转运蛋白 TSPO 和启动大脑内的长神经回路。
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来源期刊
Journal of Medical Imaging and Radiation Sciences
Journal of Medical Imaging and Radiation Sciences RADIOLOGY, NUCLEAR MEDICINE & MEDICAL IMAGING-
CiteScore
2.30
自引率
11.10%
发文量
231
审稿时长
53 days
期刊介绍: Journal of Medical Imaging and Radiation Sciences is the official peer-reviewed journal of the Canadian Association of Medical Radiation Technologists. This journal is published four times a year and is circulated to approximately 11,000 medical radiation technologists, libraries and radiology departments throughout Canada, the United States and overseas. The Journal publishes articles on recent research, new technology and techniques, professional practices, technologists viewpoints as well as relevant book reviews.
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