Molecular mechanism of Epimedium in the treatment of vascular dementia based on network pharmacology and molecular docking

被引:15
作者
Xie, Chenchen [1 ,2 ,3 ]
Tang, Hao [1 ]
Liu, Gang [1 ]
Li, Changqing [1 ]
机构
[1] Chongqing Med Univ, Dept Neurol, Affiliated Hosp 2, Chongqing, Peoples R China
[2] Chengdu Univ, Affiliated Hosp, Dept Neurol, Chengdu, Peoples R China
[3] Chengdu Univ, Clin Med Coll, Chengdu, Peoples R China
来源
FRONTIERS IN AGING NEUROSCIENCE | 2022年 / 14卷
基金
中国国家自然科学基金;
关键词
Epimedium; vascular dementia; dementia; network pharmacology; molecular docking; OXIDATIVE STRESS; BRAIN; DEATH; QUERCETIN;
D O I
10.3389/fnagi.2022.940166
中图分类号
R592 [老年病学]; C [社会科学总论];
学科分类号
03 ; 0303 ; 100203 ;
摘要
Backgroud: Vascular dementia is the second most common cause of dementia after Alzheimer's disease, accounting for an estimated 15% of cases. Recently, Epimedium has attracted great attention for its potential neuroprotective benefit. However, the direct role and mechanism of Epimedium on vascular dementia still lack systematic research. To systematically explore the possible pharmacological mechanism of Epimedium for the treatment of vascular dementia, network pharmacology, molecular docking, combined with experiment validation were conducted.Methods: The bioactive compounds and targets of Epimedium were obtained from the TCMSP database. The potential targets of vascular dementia were identified from the DrugBank, OMIM, Genecards, Therapeutic Target Database, and DisGeNET databases. GO and KEGG pathway analyses were performed. Molecular docking was applied to validate the interaction between active components and hub targets. The bilateral common carotid artery occlusion (BCCAO) method was used for construction of a vascular dementia model in mice. The effects of Epimedium on learning and memory ability were examined by behavioral tests. The mechanisms of the cerebral protective effects of Epimedium were evaluated by WB, RT-PCR, and immunofluorescence.Results: A total of 23 Epimedium active ingredients, and 71 intersecting targets of Epimedium against vascular dementia were obtained. The top five hub targets AKT1, TNF, IL1 beta, IL6, and MMP9 were identified, and molecular docking showed good binding. GO enrichment showed a total of 602 enrichment results, with 458 (80.56%) key targets mainly focused on biological processes (BP). The response to hypoxia, positive regulation of nitric oxide biosynthetic process, aging, inflammatory response, cellular response to lipopolysaccharide, negative regulation of apoptotic process were well ranked. KEGG pathway enrichment analysis identified the TNF signaling pathway as an important pathway, with the MAPK/extracellular signal-regulated kinase (ERK) and NF-kappa B signaling pathways as the key pathways involved. Consistently, in vivo experiments showed that Epimedium treatment improved learning and memory functions in mice with vascular dementia. In addition, Epimedium attenuated the activation of microglia and astrocytes in the hippocampal region after BCCAO. RT-qPCR and Western blot analysis showed that Epimedium not only affected the expression of AKT, TNF, IL1 beta, IL6, and MMP9, but also suppressed the TNF signaling pathway.Conclusion: Epimedium may exert a protective effect against vascular dementia through the alleviation of oxidative stress, neuroinflammation, BBB dysfunction, apoptosis through TNF signaling pathway. This study explored the mechanism of Epimedium on vascular dementia systematically through network pharmacological and in vivo experiment approach, which provides insight into the treatment of vascular dementia.
引用
收藏
页数:19
相关论文
共 56 条
  • [1] Flavonoids in the Treatment of Alzheimer's and Other Neurodegenerative Diseases
    Airoldi, Cristina
    La Ferla, Barbara
    D'Orazio, Giuseppe
    Ciaramelli, Carlotta
    Palmioli, Alessandro
    [J]. CURRENT MEDICINAL CHEMISTRY, 2018, 25 (27) : 3228 - 3246
  • [2] Possible Involvement of Programmed Cell Death Pathways in the Neuroprotective Action of Polyphenols
    Bastianetto, S.
    Krantic, S.
    Chabot, J-G
    Quirion, R.
    [J]. CURRENT ALZHEIMER RESEARCH, 2011, 8 (05) : 445 - 451
  • [3] The involvement of neuroinflammation and necroptosis in the hippocampus during vascular dementia
    Belkhelfa, Mourad
    Beder, Narimene
    Mouhoub, Daya
    Amri, Manel
    Hayet, Rafa
    Tighilt, Nabila
    Bakheti, Souad
    Laimouche, Soraya
    Azzouz, Djamel
    Belhadj, Rachid
    Touil-Boukoffa, Chafia
    [J]. JOURNAL OF NEUROIMMUNOLOGY, 2018, 320 : 48 - 57
  • [4] Blamire AM, 2000, J NEUROSCI, V20, P8153
  • [5] Matrix metalloproteinases degrade myelin basic protein
    Chandler, S
    Coates, R
    Gearing, A
    Lury, J
    Wells, G
    Bone, E
    [J]. NEUROSCIENCE LETTERS, 1995, 201 (03) : 223 - 226
  • [6] Herbal Medicine for the Treatment of Vascular Dementia: An Overview of Scientific Evidence
    Chang, Dennis
    Liu, Jianxun
    Bilinski, Kellie
    Xu, Li
    Steiner, Genevieve Z.
    Seto, Sai W.
    Bensoussan, Alan
    [J]. EVIDENCE-BASED COMPLEMENTARY AND ALTERNATIVE MEDICINE, 2016, 2016
  • [7] Epimedii Herba: A Promising Herbal Medicine for Neuroplasticity
    Cho, Jae-Heung
    Jung, Jae-Young
    Lee, Beom-Joon
    Lee, Kyungjin
    Park, Jae-Woo
    Bu, Youngmin
    [J]. PHYTOTHERAPY RESEARCH, 2017, 31 (06) : 838 - 848
  • [8] NADPH Oxidase 1, a Novel Molecular Source of ROS in Hippocampal Neuronal Death in Vascular Dementia
    Choi, Dong-Hee
    Lee, Kyoung-Hee
    Kim, Ji-Hye
    Seo, Ju-Ha
    Kim, Hahn Young
    Shin, Chan Young
    Han, Jung-Soo
    Han, Seol-Heui
    Kim, Yoon-Seong
    Lee, Jongmin
    [J]. ANTIOXIDANTS & REDOX SIGNALING, 2014, 21 (04) : 533 - 550
  • [9] Deng Ai-Ping, 2018, Zhongguo Zhong Yao Za Zhi, V43, P1062, DOI 10.19540/j.cnki.cjcmm.2018.0037
  • [10] Icariside II, a Broad-Spectrum Anti-cancer Agent, Reverses Beta-Amyloid-Induced Cognitive Impairment through Reducing Inflammation and Apoptosis in Rats
    Deng, Yuanyuan
    Long, Long
    Wang, Keke
    Zhou, Jiayin
    Zeng, Lingrong
    He, Lianzi
    Gong, Qihai
    [J]. FRONTIERS IN PHARMACOLOGY, 2017, 8