Hou Yali, Qian Heng, Yao Ranqi, Yu Ziran, Wang Jing, Dai Jiaohua, Cui Wenqi, Li Jian, Zhao Xiujuan
Department of Nutrition and Food Hygiene, School of Public Health, Key Laboratory of Precision Nutrition and Health, Ministry of Education, Harbin Medical University, 194 Xuefu Road, Harbin, Heilongjiang, 150081, China.
Mol Neurobiol. 2025 Mar;62(3):2872-2888. doi: 10.1007/s12035-024-04445-5. Epub 2024 Aug 24.
Perimenopausal depression is often accompanied by metabolic disorders, which have long-term harmful effects on women's physical and mental health. Quercetin, a kind of phytoestrogen, has anti-inflammatory, antioxidant, and nerve-protective effects, and can regulate various metabolic disorders. This study aims to investigate the effect of quercetin on hippocampal metabolic disorder in perimenopausal depression rat models based on untargeted metabolomics technology. The rat model of perimenopausal depression was established by ovariectomy combined with chronic unpredictable mild stress (OVX-CUMS). Rats with no difference in sucrose preference were randomly divided into four groups (n = 12): sham group, OVX-CUMS group (model group), model plus quercetin group, and model plus 17β-estradiol group. At the end of the experiment, hippocampal tissues were collected for untargeted metabolomics analysis, morphological analysis, and detection of related indicators. Metabolomics identified 23 differential metabolites in the model group, and the pathway analysis discovered hippocampus metabolic abnormalities including the metabolism of arachidonic acid metabolism, glycerophospholipid metabolism, and ubiquinone biosynthesis, accompanied by an increase in oxidative stress, inflammation, and lipid peroxidation indicators. At the same time, the morphological characteristics of ferroptosis occurred in the hippocampus in the model group. These abnormal changes were reversed by treatment with quercetin or 17β-estradiol. Quercetin can improve perimenopausal depression by regulating hippocampal metabolic disorders and reducing hippocampal ferroptosis in rats. These findings provide a new strategy for the use of quercetin in the prevention and treatment of perimenopausal depression.
围绝经期抑郁症常伴有代谢紊乱,这对女性身心健康具有长期有害影响。槲皮素作为一种植物雌激素,具有抗炎、抗氧化和神经保护作用,能够调节各种代谢紊乱。本研究旨在基于非靶向代谢组学技术,探讨槲皮素对围绝经期抑郁症大鼠模型海马代谢紊乱的影响。通过卵巢切除联合慢性不可预测轻度应激(OVX-CUMS)建立围绝经期抑郁症大鼠模型。蔗糖偏好无差异的大鼠被随机分为四组(n = 12):假手术组、OVX-CUMS组(模型组)、模型加槲皮素组和模型加17β-雌二醇组。实验结束时,收集海马组织进行非靶向代谢组学分析、形态学分析及相关指标检测。代谢组学鉴定出模型组中有23种差异代谢物,通路分析发现海马代谢异常,包括花生四烯酸代谢、甘油磷脂代谢和泛醌生物合成,同时伴有氧化应激、炎症和脂质过氧化指标升高。同时,模型组海马出现铁死亡的形态学特征。这些异常变化通过槲皮素或17β-雌二醇治疗得以逆转。槲皮素可通过调节大鼠海马代谢紊乱和减少海马铁死亡来改善围绝经期抑郁症。这些研究结果为槲皮素在围绝经期抑郁症防治中的应用提供了新策略。