积雪草治疗糖尿病肾病的物质基础及作用机制预测研究

    Study on the material basis and mechanism prediction of Centella asiatica in the treatment of diabetic nephropathy

    • 摘要:
      目的: 揭示积雪草治疗糖尿病肾病的活性成分群及其协同作用机制。
      方法: 采用超高效液相色谱—飞行时间质谱(UPLC–Q–TOF–MS/MS)对积雪草成分进行系统表征;结合网络药理学方法筛选活性成分、预测作用靶点及信号通路;通过分子对接技术验证核心成分与关键靶点的结合能力。
      结果: 从积雪草中共鉴定出80个化合物,筛选获得48个活性成分(含三萜类、多酚类及挥发油类),涉及137个潜在作用靶点,其中IL6、TNF、AKT1、STAT3、PPARG等29个为核心靶点。核心成分(如山柰酚、槲皮素、积雪草酸、羟基积雪草酸)通过调控脂质与动脉粥样硬化通路、脂肪细胞因子信号通路、cAMP信号通路等,发挥抗炎、抗氧化、改善脂质代谢及抑制肾脏纤维化作用。分子对接验证显示核心成分与核心靶点的结合能最低达–9.9 kJ/mol,表明其具有较强亲和力。
      结论: 积雪草中三萜类、多酚类及挥发油类活性成分通过作用于IL6、AKT1、STAT3等核心靶点,协同调控炎症反应、氧化应激及脂质代谢相关通路,改善糖尿病肾病病理损伤。该研究为积雪草的临床应用及抗糖尿病肾病创新药物研发提供了理论依据。

       

      Abstract:
      Objective To reveal the active ingredient group of centella asiatica in the treatment of diabetic nephropathy and its synergistic mechanism.
      Methods The chemical constituents of C. asiatica were systematically characterized using ultra-performance liquid chromatography coupled with quadrupole time-of-flight tandem mass spectrometry (UPLC-Q-TOF-MS/MS). Network pharmacology approaches were employed to screen active components and predict therapeutic targets and signaling pathways. Molecular docking was performed to validate binding affinity between core components and key targets.
      Results Eighty compounds were identified from C. asiatica, 48 active components (including triterpenoids, polyphenols, and volatile oils) screened. These implicated 137 potential targets, among which 29 core targets (e.g., IL6, TNF, AKT1, STAT3, PPARG) were identified. The core components (kaempferol, quercetin, Asiatic acid, hydroxyasiatic acid) exerted anti-inflammatory, antioxidant, lipid metabolism improvement and renal fibrosis inhibition effects by regulating the lipid and atherosclerotic pathway, adipocytokine signaling pathway, cAMP signaling pathway, etc. Molecular docking verification revealed that the binding energy between the core component and core target was as low as –9.9 kJ/mol, indicating its strong affinity.
      Conclusions The triterpenoids, polyphenols and volatile oil active components in Centella asiatica act on core targets such as IL6, AKT1 and STAT3, and synergically regulate inflammatory responses, oxidative stress and lipid metabolism-related pathways, and improve the pathological damage of diabetic nephropathy. This research provides a theoretical basis for the clinical application of centella asiatica and the development of innovative drugs for treating diabetic nephropathy.

       

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