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急性应激对小鼠左海马体中与三羧酸(TCA)循环相关的代谢相互作用的影响。

Effects of Acute Stress on Metabolic Interactions Related to the Tricarboxylic Acid (TCA) Cycle in the Left Hippocampus of Mice.

作者信息

Yun Chang-Soo, Hwang Yoon Ho, Yeon Jehyeong, Baek Hyeon-Man, Kim Dong Youn, Han Bong Soo

机构信息

Department of Radiation Convergence Engineering, College of Software and Digital Healthcare Convergence, Yonsei University, 1, Yeonsedae-gil, Heungeop-myeon, Wonju 26493, Republic of Korea.

Institute for Human Genomic Study, College of Medicine, Korea University, Seoul 15355, Republic of Korea.

出版信息

Metabolites. 2024 Dec 11;14(12):699. doi: 10.3390/metabo14120699.

Abstract

BACKGROUND/OBJECTIVES: The acute stress response affects brain metabolites closely linked to the tricarboxylic acid (TCA) cycle. This response involves time-dependent changes in hormones and neurotransmitters, which contribute to resilience and the ability to adapt to acute stress while maintaining homeostasis. This physiological mechanism of metabolic dynamics, combined with time-series analysis, has prompted the development of new methods to observe the relationship between TCA cycle-related brain metabolites. This study aimed to observe the acute stress response through metabolic interactions using time-series proton magnetic resonance spectroscopy (1H-MRS) in the left hippocampus of mice.

METHODS

In this study, 4-week-old male C57BL/6N mice ( = 24) were divided into control ( = 12) and acute stress groups ( = 12). Acute stress was induced through a 2 h restraint protocol. Time-series 1H-MRS data were obtained on the left hippocampus of both groups using a 9.4 T 1H-MRS scanner. Time-series MRS data were quantified using LCModel, and significant metabolic interactions were identified through Spearman correlation analysis, a one-tailed sign test, and false discovery rate correction.

RESULTS

No significant metabolic correlation coefficient was observed in the control group. However, in the acute stress group, glutathione (GSH) and N-acetyl aspartate (NAA) showed a significant positive correlation over time, with a high correlation coefficient exceeding 0.5.

CONCLUSIONS

Temporal measurement of GSH and NAA, combined with correlation analysis, offers a comprehensive understanding for the metabolic dynamics during acute stress. This approach emphasizes their distinct roles and interdependence in the progression of oxidative stress, mitochondrial function, and the maintenance of physiological homeostasis.

摘要

背景/目的:急性应激反应会影响与三羧酸(TCA)循环密切相关的脑代谢物。这种反应涉及激素和神经递质的时间依赖性变化,有助于恢复力以及在维持体内平衡的同时适应急性应激的能力。这种代谢动力学的生理机制,结合时间序列分析,促使了观察TCA循环相关脑代谢物之间关系的新方法的发展。本研究旨在通过时间序列质子磁共振波谱(1H-MRS)观察小鼠左海马体中急性应激反应的代谢相互作用。

方法

在本研究中,将4周龄雄性C57BL/6N小鼠(n = 24)分为对照组(n = 12)和急性应激组(n = 12)。通过2小时的束缚方案诱导急性应激。使用9.4T 1H-MRS扫描仪在两组小鼠的左海马体上获取时间序列1H-MRS数据。使用LCModel对时间序列MRS数据进行定量,并通过Spearman相关分析、单尾符号检验和错误发现率校正来识别显著的代谢相互作用。

结果

对照组未观察到显著的代谢相关系数。然而,在急性应激组中,谷胱甘肽(GSH)和N-乙酰天门冬氨酸(NAA)随时间呈现显著正相关,相关系数高于0.5。

结论

GSH和NAA的时间测量结合相关分析,为急性应激期间的代谢动力学提供了全面的理解。这种方法强调了它们在氧化应激进展、线粒体功能和生理稳态维持中的不同作用和相互依赖性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/23eb/11678911/594e773d59bb/metabolites-14-00699-g001.jpg

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