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黄芪葛根汤通过调节 PI3K/AKT/Nrf2 通路和代谢组学对糖尿病肝损伤的保护作用。

Protective effects of Huang-Qi-Ge-Gen decoction against diabetic liver injury through regulating PI3K/AKT/Nrf2 pathway and metabolic profiling.

机构信息

Key Laboratory of Digital Quality Evaluation of Chinese Materia Medica of State Administration of TCM and Engineering & Technology Research Center for Chinese Materia Medica Quality of Guangdong Province, Guangdong Pharmaceutical University, Guangzhou 510006, China; School of Pharmacy, Nanjing University of Chinese Medicine, Jiangsu Engineering Research Center for Development and Application of External Drugs in Traditional Chinese Medicine, Jiangsu Province Engineering Research Center of Classical Prescription, Nanjing 210023, China.

Key Laboratory of Digital Quality Evaluation of Chinese Materia Medica of State Administration of TCM and Engineering & Technology Research Center for Chinese Materia Medica Quality of Guangdong Province, Guangdong Pharmaceutical University, Guangzhou 510006, China.

出版信息

J Ethnopharmacol. 2024 Apr 6;323:117647. doi: 10.1016/j.jep.2023.117647. Epub 2023 Dec 30.

Abstract

ETHNOPHARMACOLOGICAL RELEVANCE

Huang-Qi-Ge-Gen decoction (HGD) is a traditional Chinese medicine prescription that has been used for centuries to treat "Xiaoke" (the name of diabetes mellitus in ancient China). However, the ameliorating effects of HGD on diabetic liver injury (DLI) and its mechanisms are not yet fully understood.

AIM OF THE STUDY

To elucidate the ameliorative effect of HGD on DLI and explore its material basis and potential hepatoprotective mechanism.

MATERIALS AND METHODS

A diabetic mice model was induced by feeding a high-fat diet and injecting intraperitoneally with streptozotocin (40 mg kg) for five days. After the animals were in confirmed diabetic condition, they were given HGD (3 or 12 g kg, i. g.) for 14 weeks. The effectiveness of HGD in treating DLI mice was evaluated by monitoring blood glucose and blood lipid levels, liver function, and pathological conditions. Furthermore, UPLC-MS/MS was used to identify the chemical component profile in HGD and absorption components in HGD-treated plasma. Network pharmacology and molecular docking were performed to predict the potential pathway of HGD intervention in DLI. Then, the results of network pharmacology were validated by examining biochemical parameters and using western blotting. Lastly, urine metabolites were analyzed by metabolomics strategy to explore the effect of HGD on the metabolic profile of DLI mice.

RESULTS

HGD exerted therapeutic potential against the disorders of glucose metabolism and lipid metabolism, liver dysfunction, liver steatosis, and fibrosis in a DLI model mice induced by HFD/STZ. A total of 108 chemical components in HGD and 18 absorption components in HGD-treated plasma were preliminarily identified. Network pharmacology and molecular docking results of the absorbed components in plasma indicated PI3K/AKT as a potential pathway for HGD to intervene in DLI mice. Further experiments verified that HGD markedly reduced liver oxidative stress in DLI mice by modulating the PI3K/AKT/Nrf2 signaling pathway. Moreover, 19 differential metabolites between normal and DLI mice were detected in urine, and seven metabolites could be significantly modulated back by HGD.

CONCLUSIONS

HGD could ameliorate diabetic liver injury by modulating the PI3K/AKT/Nrf2 signaling pathway and urinary metabolic profile.

摘要

民族药理学相关性

黄芪-葛根汤(HGD)是一种中药方剂,已使用数百年用于治疗“消渴”(中国古代糖尿病的名称)。然而,HGD 对糖尿病肝损伤(DLI)的改善作用及其机制尚未完全阐明。

研究目的

阐明 HGD 对 DLI 的改善作用,并探讨其物质基础和潜在的肝保护机制。

材料和方法

通过高脂饮食喂养和腹腔注射链脲佐菌素(40mg/kg)五天诱导糖尿病小鼠模型。动物确诊为糖尿病后,给予 HGD(3 或 12g/kg,ig)治疗 14 周。通过监测血糖和血脂水平、肝功能和病理状况来评估 HGD 治疗 DLI 小鼠的效果。此外,采用 UPLC-MS/MS 鉴定 HGD 的化学成分谱和 HGD 处理后血浆中的吸收成分。通过网络药理学和分子对接预测 HGD 干预 DLI 的潜在途径。然后,通过检查生化参数和使用 Western blot 验证网络药理学的结果。最后,通过代谢组学策略分析尿液代谢物,以探讨 HGD 对 DLI 小鼠代谢谱的影响。

结果

HGD 对 HFD/STZ 诱导的 DLI 模型小鼠的糖代谢和脂代谢紊乱、肝功能障碍、肝脂肪变性和纤维化具有治疗潜力。初步鉴定了 HGD 中的 108 种化学成分和 HGD 处理后血浆中的 18 种吸收成分。血浆中吸收成分的网络药理学和分子对接结果表明,PI3K/AKT 是 HGD 干预 DLI 小鼠的潜在途径。进一步的实验验证了 HGD 通过调节 PI3K/AKT/Nrf2 信号通路显著降低了 DLI 小鼠的肝脏氧化应激。此外,在尿液中检测到正常和 DLI 小鼠之间的 19 个差异代谢物,并且 HGD 可以显著调节其中 7 个代谢物。

结论

HGD 通过调节 PI3K/AKT/Nrf2 信号通路和尿代谢谱改善糖尿病肝损伤。

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