Neuroprotective effects of dimethyl fumarate against depression-like behaviors via astrocytes and microglia modulation in mice: possible involvement of the HCAR2/Nrf2 signaling pathway

神经保护 富马酸二甲酯 小胶质细胞 神经炎症 星形胶质细胞 药理学 化学 氟西汀 海马结构 海马体 行为绝望测验 信号转导 氧化应激 神经科学 抗抑郁药 细胞生物学 医学 生物 生物化学 内科学 中枢神经系统 炎症 免疫学 受体 多发性硬化 血清素
作者
Alana Gomes de Souza,Iardja Stéfane Lopes,Adriano José Maia Chaves Filho,Talita Matias Barbosa Cavalcante,João Victor Souza Oliveira,Michele Albuquerque Jales de Carvalho,Klistenes Alves de Lima,Paloma Marinho Jucá,Sabrina Silva Mendonça,Melina Mottin,Carolina Horta Andrade,Francisca Cléa Florenço de Sousa,Danielle Macêdo,Marta Maria de França Fonteles
出处
期刊:Naunyn-schmiedebergs Archives of Pharmacology [Springer Nature]
卷期号:395 (9): 1029-1045 被引量:14
标识
DOI:10.1007/s00210-022-02247-x
摘要

We postulated that dimethyl fumarate (DMF) exerts neuroprotective effects against depression-like behaviors through astrocytes and microglia modulation. To ascertain our hypothesis and define the mechanistic pathways involved in effect of DMF on neuroinflammation, we used the depression model induced by chronic unpredictable mild stress (CUMS), in which, the mice were exposed to stressful events for 28 days and from the 14th day they received DMF in the doses of 50 and 100 mg/kg or fluoxetine 10 mg/kg or saline. On the 29th day, the animals were subjected to behavioral tests. Microglia (Iba1) and astrocyte (GFAP) marker expressions were evaluated by immunofluorescence analyzes and the cytokines TNF-α and IL-Iβ by immunoenzymatic assay. In addition, computational target prediction, 3D protein structure prediction, and docking calculations were performed with monomethyl fumarate (DMF active metabolite) and the Keap1 and HCAR2 proteins, which suggested that these could be the probable targets related protective effects. CUMS induced anxiety- and depressive-like behaviors, cognitive deficit, decreased GFAP, and increased Iba1, TNF-α, and IL-Iβ expression in the hippocampus. These alterations were reversed by DMF. Thus, it is suggested that one of the mechanisms involved in the antidepressant effect of DMF is neuroinflammatory suppression, through the signaling pathway HCAR2/Nrf2. However, more studies must be performed to better understand the molecular mechanisms of this drug.
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