胃动素
多巴胺能
多巴胺
药理学
胃轻瘫
内分泌学
内科学
医学
受体
多巴胺受体
神经递质
糖尿病
多巴胺受体D2
多潘立酮
运动性
下调和上调
胃肠激素
治疗效果
生物
多巴胺拮抗剂
生物活性
糖尿病神经病变
黄芩素
作者
Jukai Huang,Shu Zhang,Shuli Cheng,Xiaohui Yang
出处
期刊:Neuroendocrinology
[Karger Publishers]
日期:2026-03-05
卷期号:116 (4): 200-218
摘要
INTRODUCTION: Diabetic gastroparesis (DGP) is a severe diabetic complication with limited therapeutic options. This study investigates the effects of Foxiangsan on DGP and elucidates its molecular mechanisms. METHODS: A rat model of DGP was established and divided into 5 groups: model (MG), western medicine (WMG, domperidone), and 3 Foxiangsan dose groups (LDG, MDG, HDG). Serum dopamine (DA) and motilin levels, along with striatal DA receptor D2 (DRD2) expression, were measured. Network pharmacology identified bioactive compounds and targets, and pathway enrichment and molecular docking were used to evaluate mechanistic interactions. RESULTS: Foxiangsan significantly improved gastrointestinal motility, increased motilin levels, reduced DA levels, and enhanced DRD2 expression in the striatum. Network pharmacology identified DRD2, AKT1, and MAPK3 as key targets, while molecular docking confirmed strong binding affinities of bioactive compounds such as β-sitosterol and baicalein with DRD2. The therapeutic effects of Foxiangsan involve modulation of the cAMP, serotonin, and DA pathways. CONCLUSION: Foxiangsan exerts multicomponent, multi-target, and multi-pathway actions in DGP by modulating neuroendocrine function, suggesting its potential as a novel therapeutic approach. Further investigations are needed to confirm its clinical efficacy.
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