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Insight into the metabolic mechanism of Diterpene Ginkgolides on antidepressant effects for attenuating behavioural deficits compared with venlafaxine

机译:与文拉法辛相比二萜银杏内酯的代谢机制对减轻行为缺陷的抗抑郁作用的见解

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摘要

Depression is a severe and chronic mental disorder, affecting about 322 million individuals worldwide. A recent study showed that diterpene ginkgolides (DG) have antidepressant-like effects on baseline behaviours in mice. Here, we examined the effects of DG and venlafaxine (VLX) in a chronic social defeat stress model of depression. Both DG and VLX attenuated stress-induced social deficits, despair behaviour and exploratory behaviour. To elucidate the metabolic changes underlying the antidepressive effects of DG and VLX, we investigated candidate functional pathways in the prefrontal cortex using a GC-MS-based metabolomics approach. Metabolic functions and pathways analysis revealed that DG and VLX affect protein biosynthesis and nucleotide metabolism to enhance cell proliferation, with DG having a weaker impact than VLX. Glutamate and aspartate metabolism played important roles in the antidepressant effects of DG and VLX. Tyrosine degradation and cell-to-cell signaling and interaction helped discriminate the two antidepressants. L-glutamic acid was negatively correlated, while hypoxanthine was positively correlated, with the social interaction ratio. Understanding the metabolic changes produced by DG and VLX should provide insight into the mechanisms of action of these drugs and aid in the development of novel therapies for depression.
机译:抑郁症是一种严重的慢性精神障碍,全世界约有3.22亿人受到影响。最近的一项研究表明,二萜银杏内酯(DG)对小鼠的基线行为具有抗抑郁样作用。在这里,我们检查了DG和文拉法辛(VLX)在抑郁症的慢性社交失败应激模型中的作用。 DG和VLX均可减轻压力引起的社会缺陷,绝望行为和探索行为。为了阐明DG和VLX的抗抑郁作用背后的代谢变化,我们使用基于GC-MS的代谢组学方法研究了额叶前额叶中的候选功能途径。代谢功能和途径分析表明,DG和VLX影响蛋白质的生物合成和核苷酸代谢,从而增强细胞增殖,而DG的影响比VLX弱。谷氨酸和天冬氨酸的代谢在DG和VLX的抗抑郁作用中起着重要作用。酪氨酸降解以及细胞间信号传导和相互作用有助于区分这两种抗抑郁药。 L-谷氨酸与社交互动率呈负相关,次黄嘌呤与社交互动率呈正相关。了解DG和VLX产生的代谢变化,应该可以洞悉这些药物的作用机制,并有助于开发新的抑郁症疗法。

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