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大鼠大脑皮质、小脑、下丘脑和海马的氨基酸、有机酸和脂肪酸代谢谱分析的老年脑代谢组学研究。

Aged Brain Metabolomics Study by Metabolic Profiling Analysis of Amino Acids, Organic Acids, and Fatty Acids in Cortex, Cerebellum, Hypothalamus, and Hippocampus of Rats.

机构信息

College of Pharmacy, and Research Institute of Life and Pharmaceutical Sciences, Sunchon National University, 57922 Suncheon, Republic of Korea.

Central R&D Center, B&Tech Co., Ltd., 58205 Naju, Republic of Korea.

出版信息

Front Biosci (Landmark Ed). 2024 Aug 22;29(8):306. doi: 10.31083/j.fbl2908306.

Abstract

BACKGROUND

Aging is a progressive process characterized by weakness in brain function. Although metabolomics studies on the brain related with aging have been conducted, it is not yet fully understood. A systematic metabolomics study was performed to search for biomarkers and monitor altered metabolism in various brain tissues of the cortex, cerebellum, hypothalamus, and hippocampus of young (8 months old) and old rats (22 months old).

METHODS

Simultaneous profiling analysis of amino acids (AAs), organic acids (OAs), and fatty acids (FAs) in the brain tissues of young and old rats were performed by gas chromatography-tandem mass spectrometry.

RESULTS

Under optimal conditions, AA, OA, and FA profiling methods showed good linearity (r ≥0.995) with limit of detection of ≤30 and 73.2 ng and limit of quantification of ≤90.1 and 219.5 ng, respectively. Repeatability varied from 0.4 to 10.4 and 0.8 to 14.8% relative standard deviation and accuracy varied from -11.3 to 10.3 and -12.8 to 14.1% relative error, respectively. In the profiling analysis, total 32, 43, 45, and 30 metabolites were determined in cortex, cerebellum, hypothalamus, and hippocampus, respectively. In statistical analysis, eight AAs (alanine, valine, leucine, isoleucine, threonine, serine, proline, and phenylalanine) in the cortex and four metabolites (alanine, phenylalanine, 3-hydoxypropionic acid, and eicosadienoic acid) in the cerebellum were significantly evaluated (Q-value <0.05, variable importance in projection scores ≥1.0). In all brain tissues, the score plots of orthogonal partial least square discriminant analysis were clearly separated between the young and old groups.

CONCLUSIONS

Metabolomics results indicate that mechanistic targets of rapamycin complex 1, branched chain-amino acid, and energy metabolism are related to inflammation and mitochondrial dysfunction in the brain during aging. Thus, these results may explain the characteristic metabolism of brain aging.

摘要

背景

衰老是一个以大脑功能衰退为特征的渐进过程。虽然已经进行了与衰老相关的大脑代谢组学研究,但尚未完全了解。本研究进行了一项系统的代谢组学研究,以寻找生物标志物并监测年轻(8 个月大)和年老(22 个月大)大鼠大脑皮层、小脑、下丘脑和海马体的各种组织中代谢物的变化。

方法

通过气相色谱-串联质谱对年轻和年老大鼠脑组织中的氨基酸(AA)、有机酸(OA)和脂肪酸(FA)进行同步分析。

结果

在最佳条件下,AA、OA 和 FA 分析方法的线性良好(r≥0.995),检测限≤30 和 73.2ng,定量限≤90.1 和 219.5ng。重复性在 0.4%到 10.4%和 0.8%到 14.8%相对标准偏差之间变化,准确性在-11.3%到 10.3%和-12.8%到 14.1%相对误差之间变化。在分析中,在皮层、小脑、下丘脑和海马体中分别确定了 32、43、45 和 30 种代谢物。在统计学分析中,皮层中有 8 种 AA(丙氨酸、缬氨酸、亮氨酸、异亮氨酸、苏氨酸、丝氨酸、脯氨酸和苯丙氨酸)和小脑中有 4 种代谢物(丙氨酸、苯丙氨酸、3-羟丙酸和二十碳二烯酸)被显著评估(Q 值<0.05,投影变量重要性得分≥1.0)。在所有脑组织中,年轻组和年老组之间正交偏最小二乘判别分析的得分图明显分开。

结论

代谢组学结果表明,雷帕霉素复合物 1 的机制靶点、支链氨基酸和能量代谢与衰老过程中大脑的炎症和线粒体功能障碍有关。因此,这些结果可能解释了大脑衰老的特征代谢。

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