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Effects of Qingyangshen glycosides on neuroplasticity in a mouse model of social defeat

摘要Background:Qingyangshen(Cynanchum otophyllum C.K.Schneid)is a folk drug for treating depression and other mental disorders induced by social defeat stress.Neuroplasticity in the hippocampus is essential for the modulation of cognition and emotion,and its impairment may contribute to the development and progression of depression.Our previous studies have found that Qingyangshen glycosides(QYS)can improve depression-like behavior in social failure mouse models,mainly through PGC-1α/FNDC5/BDNF signaling pathways activation,but its effects and mechanisms on hippocampal neuroplasticity remain unknown.Methods:Chronic social defeat stress(CSDS)was used to induce social defeat in mice.Morphological changes in the hippocampus were observed by H&E staining and Golgi staining.Immunofluorescence double staining was used to detect the expression of synaptophysin(SYN)and postsynaptic density protein-95(PSD-95),while western blot was employed to evaluate PSD-95,SYN,and doublecortin(DCX)proteins.The pathological processing of social defeat and the therapeutic effects of QYS on it was confirmed through behavioral assessment associated with morpho-logic observation.Results:During the whole study,the sucrose preference indices and OFT activity time of CSDS mice were significantly decreased(p≤0.05),and the tail suspension immobil-ity time was significantly increased(p≤0.05),suggesting that the mice had significant depressive symptoms.Treatment with QYS(25,50,and 100 mg/kg)significantly al-leviated depressive symptoms in CSDS mice,which was demonstrated by significantly(p≤0.05 or p≤0.01)reducing the duration of tail-hanging immobility and increasing the tendency of sucrose preference indices and OFT activity time.QYS treatment also significantly increased the expression of DCX,PSD-95,and SYN proteins,which play a crucial role in depression.Conclusions:QYS alleviated these symptoms by enhancing hippocampal neuroplasti-city through upregulating the expression of synapse-associated proteins(SAPs).The therapeutic mechanism of QYS may involve modulating the neuroplasticity of hip-pocampus neurons by altering the expression of SAPs.

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作者 Jingru Wang [1] Weishi Chen [2] Qiang Zhu [2] Yao Liu [2] Zheng Kang [3] Dingding Liu [2] Guirong Zeng [3] 学术成果认领
作者单位 School of Pharmacy and Research Center for Pharmacodynamic Material Basis and Mechanism of Action,Guizhou University of Traditional Chinese Medicine,Guiyang,China;Pharmacological research department,Hunan Key Laboratory of Pharmacodynamics and Safety Evaluation of New Drugs and Hunan Provincial Research Center for Safety Evaluation of Drugs,Changsha,China [1] School of Pharmacy and Research Center for Pharmacodynamic Material Basis and Mechanism of Action,Guizhou University of Traditional Chinese Medicine,Guiyang,China [2] Pharmacological research department,Hunan Key Laboratory of Pharmacodynamics and Safety Evaluation of New Drugs and Hunan Provincial Research Center for Safety Evaluation of Drugs,Changsha,China [3]
DOI 10.1002/ame2.12499
发布时间 2025-05-06(万方平台首次上网日期,不代表论文的发表时间)
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