Geniposide exerts the antidepressant effect by affecting inflammation and glucose metabolism in a mouse model of depression

IF 4.7 2区 医学 Q1 BIOCHEMISTRY & MOLECULAR BIOLOGY
Guanghui Chen , Wenbin Zhang , Qiang Chen , Meixue Dong , Miao Liu , Gang Liu
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引用次数: 0

Abstract

Depression is a severe mental illness affecting patient's physical and mental health. However, long-term effects of existing therapeutic modalities for depression are not satisfactory. Geniposide is an iridoid compound highly expressed in gardenia jasminoides for removing annoyance. The activity of geniposide against depression has been widely studied while most studies concentrated on the expression levels of gene and protein. Herein, the aim of the present study was to employ non-target metabolomic platform of serum to investigate metabolic changes of depression mice and further verify in hippocampus for analyzing the antidepressant mechanism of geniposide. Then we discovered that 9 metabolites of serum were significantly increased in depressive group (prostaglandin E2, leukotriene C4, arachidonic acid, phosphatidylcholine (PC, 16:0/16:0), LysoPC (18:1 (9Z)/0:0), phosphatidylethanolamine (14:0/16:0), creatine, oleamide and aminomalonic acid) and 6 metabolites were decreased (indoxylsulfuric acid, testosterone, lactic acid, glucose 6-phosphate, leucine and valine). The levels of arachidonic acid, LysoPC, lactic acid and glucose 6-phosphate in hippocampus were consistent change with serum in depression mice. Most of them showed significant tendencies to be normal by geniposide treatment. Metabolic pathway analysis indicated that arachidonic acid metabolism and glucose metabolism were the main pathogenesis for the antidepressant effect of geniposide. In addition, the levels of serum tumor necrosis factor-α and interleukin-1 were increased in depressive mice and reversed after geniposide treatment. This study revealed that abnormal metabolism of inflammatory response and glucose metabolism of the serum and hippocampus involved in the occurrence of depressive disorder and antidepressant effect of geniposide.

在抑郁症小鼠模型中,吉尼泊苷通过影响炎症和葡萄糖代谢发挥抗抑郁作用。
抑郁症是一种影响患者身心健康的严重精神疾病。然而,现有的抑郁症治疗方法的长期效果并不理想。京尼平甙是一种鸢尾类化合物,在栀子中含量很高,具有消除烦躁的作用。有关基尼泊甙对抑郁症的活性研究较多,但大多数研究都集中在基因和蛋白质的表达水平上。本研究旨在利用血清非靶标代谢组学平台研究抑郁症小鼠的代谢变化,并进一步在海马中验证分析基尼泊甙的抗抑郁机制。研究发现,抑郁组小鼠血清中的9种代谢物(前列腺素E2、白三烯C4、花生四烯酸、磷脂酰胆碱(PC,16:0/16:0)、溶血磷脂酰胆碱(18:1(9Z)/0:0)、磷脂酰乙醇胺(14:0/16:0)、肌酸、油胺和氨基丙二酸)以及 6 种代谢物(吲哚硫酸、睾酮、乳酸、6-磷酸葡萄糖、亮氨酸和缬氨酸)的含量有所下降。抑郁小鼠海马中花生四烯酸、溶血酸、乳酸和 6-磷酸葡萄糖的水平与血清中的变化一致。经吉尼泊苷治疗后,大多数指标趋于正常。代谢通路分析表明,花生四烯酸代谢和糖代谢是基尼泊甙抗抑郁作用的主要发病机制。此外,抑郁小鼠血清中肿瘤坏死因子-α和白细胞介素-1的水平升高,经基尼泊苷治疗后得到逆转。这项研究揭示了血清和海马的炎症反应和糖代谢异常参与了抑郁症的发生和基尼泊甙的抗抑郁作用。
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来源期刊
CiteScore
7.70
自引率
3.90%
发文量
410
审稿时长
36 days
期刊介绍: Chemico-Biological Interactions publishes research reports and review articles that examine the molecular, cellular, and/or biochemical basis of toxicologically relevant outcomes. Special emphasis is placed on toxicological mechanisms associated with interactions between chemicals and biological systems. Outcomes may include all traditional endpoints caused by synthetic or naturally occurring chemicals, both in vivo and in vitro. Endpoints of interest include, but are not limited to carcinogenesis, mutagenesis, respiratory toxicology, neurotoxicology, reproductive and developmental toxicology, and immunotoxicology.
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