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Mechanistic insights into the anti-depressant effect of emodin: an integrated systems pharmacology study and experimental validation

机译:大黄素抗抑郁效果的机械洞察:综合系统药理学研究与实验验证

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摘要

Depression is a complex neuropsychiatric disease involved multiple targets and signaling pathways. Systems pharmacology studies could potentially present a comprehensive molecular mechanism to delineate the anti-depressant effect of emodin (EMO). In this study, we investigated the anti-depressant effects of EMO in the chronic unpredictable mild stress (CUMS) rat model of depression and gained insights into the underlying mechanisms using systems pharmacology and molecular simulation analysis. Forty-three potential targets of EMO for treatment of depression were obtained. GO biological process analysis suggested that the biological functions of these targets mainly involve the regulation of reactive oxygen species metabolic process, response to lipopolysaccharide, regulation of inflammatory response, etc. KEGG pathway enrichment analysis showed that the PI3K-Akt signaling pathway, insulin resistance, IL-17 signaling pathway were the most significantly enriched signaling pathways. The molecular docking analysis revealed that EMO might have a strong combination with ESR1, AKT1 and GSK3B. Immunohistochemical staining and Western blotting showed that 2 weeks’ EMO treatment (80 mg/kg/day) reduced depression related microglial activation, neuroinflammation and altered PI3K-Akt signaling pathway. Our findings provide a systemic pharmacology basis for the anti-depressant effects of EMO.
机译:抑郁症是涉及多个目标和信号通路复杂的神经精神性疾病。系统药理学研究有可能提交一份全面的分子机制划定大黄素(EMO)的抗抑郁作用。在这项研究中,我们调查了慢性应激EMO的抗抑郁作用(CUMS)抑郁症的大鼠模型,并获得见解使用系统药理学和分子模拟分析的基本机制。获得四十三个治疗抑郁症的EMO的潜在目标。 GO生物学过程分析表明,这些目标的生物学功能主要涉及反应性氧物质的调节代谢过程,响应于脂多糖,炎症反应的调节等KEGG途径富集分析表明,PI3K-Akt信号传导途径,胰岛素抵抗, IL-17信号转导途径是最显著富集信号通路。分子对接分析显示,EMO可能与ESR1,AKT1和GSK3B强大的组合。免疫组织化学染色和Western印迹表明,两周的治疗EMO(80毫克/公斤/天)减少抑郁相关的小胶质细胞活化,神经炎症和改变的PI3K-Akt信号传导途径。我们的发现提供了EMO的抗抑郁作用的药理系统性基础。

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