黄芪注射液通过抗神经炎症与抗氧化应激双重作用改善糖尿病认知功能障碍:基于网络药理学分析及实验验证OA
Astragalus injection alleviates diabetic cognitive impairment(DCI)through dual effects of anti-neuroinflammation and antioxidative stress based on network pharmacology analysis and experimental validation
糖尿病认知功能障碍(DCI)是糖尿病常见并发症,严重影响患者生活质量,探索有效干预手段具有重要临床意义.研究聚焦黄芪注射液(AI)对 DCI 的干预作用,采用网络药理学结合体内外实验的研究方法,系统探究其作用机制与核心靶点.研究首先通过 TCMSP数据库筛选黄芪活性成分,结合Swiss Target Prediction及疾病数据库预测并筛选药物与 DCI 的共同靶点,构建"药物-活性成分-靶点-疾病"网络及蛋白质互作网络,再经GO、KEGG富集分析明确核心作用通路;随后通过体内外实验验证黄芪注射液的干预效果,借助Western Blot检测关键调控蛋白的表达,阐明其作用机制.结果显示,研究筛选出黄芪25 个活性成分及251 个药物靶点,与 DCI 靶点交集后获得 220 个共有靶点,其作用主要涉及肿瘤、钙信号、VEGF 及TLR等多条信号通路及响应外界刺激、缺氧应答等生物学过程;实验证实,黄芪注射液可通过激活Keap1/Nrf2 信号通路发挥抗氧化作用,并抑制 TLR-4/NF-κB 信号通路减轻神经炎症,以双重机制改善 DCI大鼠的认知功能障碍.
Objective:To explore the effects of astragalus injection(AI)in patients with diabetic cognitive impairment(DCI). Methods:First,to screen for effective chemical components of astragalus,we searched Traditional Chinese Medicines Systems Pharmacology(TCMSP)and Analysis Platform databases.We then predicted the corresponding potential target genes using Swiss Target Prediction,searched and filtered three disease databases to identify DCI targets,and constructed a drug-component-target-disease interaction network and protein-protein interaction(PPI)network.The core targets and pathways of AI against DCI were predicted using Gene Ontology(GO)and Kyoto Encyclopedia of Genes and Genomes(KEGG)functional enrichment analyses.In vivo experiments demonstrated the efficacy of AI in alleviating diabetes-associated cognitive impairment,whereas in vitro studies verified its anti-inflammatory and antioxidant stress mechanisms.Finally,western blot analysis identified key regulatory proteins involved in inflammation and oxidative stress,proposing a potential mechanism by which AI mitigates DCI through modulation of these proteins. Results:We screened 25 active components of astragalus and 251 drug targets and obtained 220 common targets after intersecting 8,036 DCI targets.GO enrichment analysis showed that astragalus mainly treats DCI by regulating the response to external stimuli,lipopolysaccharide,hypoxia,and oxygen levels.KEGG pathway enrichment analysis revealed that it was mainly involved in cancer,calcium signaling,p53 signaling,vascular endothelial growth factor(VEGF)signaling pathway,and Toll-like receptor(TLR)signaling pathways.Experimental results demonstrated that AI alleviates diabetes-associated cognitive impairment through dual mechanisms:activating the Kelch-like ECH-associated protein(Keap1)/nuclear factor-erythroid-derived related factor 2(Nrf2)signaling pathway to exert antioxidant effects,and inhibiting the TLR-4/nuclear factor-kappa B(NF-κB)signaling pathway to mitigate neuroinflammation,thereby improving cognitive dysfunction and hyperglycemia. Conclusions:Network pharmacology identified potential AI interventions for DCI,and experiments were conducted to confirm some of the major targets in the predictive signaling pathway.Our study offers new insights into the mechanisms of AI treatment for DCI.
夏桐;索艳荣;郭茂娟;姜希娟;李虎虎;戴永娜;曾文赟;黄法银;李诗琪;闫逸婧;郭霖;张文澜;王玉林;林沛哲;王一婧
天津中医药大学中西医结合学院,天津赣州市人民医院中医科,赣州天津中医药大学中西医结合学院,天津天津中医药大学中西医结合学院,天津天津中医药大学中西医结合学院,天津天津中医药大学中医学院,天津赣州市人民医院肿瘤科,赣州天津中医药大学中医学院,天津天津中医药大学中医学院,天津天津中医药大学中医学院,天津天津中医药大学中西医结合学院,天津天津中医药大学中西医结合学院,天津天津中医药大学中医学院,天津中国中医科学院广安门医院,北京天津中医药大学针灸推拿学院,天津
黄芪注射液黄芪糖尿病认知功能障碍抗神经炎症抗氧化应激网络药理学
Astragalus injectionAstragalus membranaceus Cognitive impairment of diabetesanti-neuroinflammationantioxidative stressNetwork pharmacology
《针灸和草药(英文)》 2026 (2)
230-246,17
This study was supported by the National Natural Science Foundation of China(No.81904146,82004330),Tianjin Municipal Education Commission Research Project(No.2023ZD024),Research project on the integrative medicine by the Tianjin Municipal Health Commission(No.2023075),Tianjin Research Innovation Project for Postgraduate Students(No.2022SKY238),Traditional Chinese medicine project of Jiangxi Provincial Health Commission(No.2018A397).
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