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芒果苷衍生物 TPX 通过 PI3K/AKT 和 AMPK 信号通路对人 HepG2 和 HL-7702 肝细胞胰岛素抵抗的改善作用。

Ameliorative effects of mangiferin derivative TPX on insulin resistance via PI3K/AKT and AMPK signaling pathways in human HepG2 and HL-7702 hepatocytes.

机构信息

Department of Pharmacy, Changzheng Hospital, Naval Medical University (Second Military Medical University), Shanghai 200003, China; Shanghai Key Laboratory for Pharmaceutical Metabolite Research, Shanghai 200433, China.

Institute of Chinese Materia Medica, Shanghai University of Traditional Chinese Medicine, Shanghai 201203, China.

出版信息

Phytomedicine. 2023 Jun;114:154740. doi: 10.1016/j.phymed.2023.154740. Epub 2023 Mar 11.

Abstract

BACKGROUND

As a multifaceted metabolic disorder, insulin resistance is accompanied by the preceding onset of type 2 diabetes mellitus, hyperinsulinemia, metabolic dysfunction-associated fatty liver disease (MAFLD) and other metabolic syndromes. Currently, the number of existing drugs and mechanism-based strategies is limited to alleviate insulin resistance in clinics. As a natural polyphenol product derivative, 1,3,6,7-tetrapropylene acyloxy-ketone (TPX) showed a significant hypoglycemic effect in our previous studies. However, whether TPX could improve hepatic insulin sensitivity was unknown.

PURPOSE

To explore whether insulin sensitivity can be improved by the treatment with TPX and further investigate its mechanism(s) of activity.

METHODS

To mimic hyperglycemia and insulin resistance in vitro, human HepG2 and HL-7702 hepatocytes were exposed to high glucose. Cellular glucose uptake, glucose consumption, glycogen synthesis, and glucose production were quantified after TPX treatment. The effects of TPX on AMP-activated protein kinase (AMPK) phosphorylation, glucose metabolism, and insulin signal transduction were evaluated by western blotting and network pharmacology analysis. The eGFP-membrane of glucose transporter type 4 (GLUT4) lentivirus transfected cells were constructed to investigate the effects of TPX on GLUT4 mobilization. Reactive oxygen species activity in high glucose-induced insulin-resistant cells was measured by DCFH-DA to show oxidative stress.

RESULTS

Treatment with TPX improved glycogen synthesis and inhibited gluconeogenesis by regulating GSK3β, G6Pase, and PEPCK. Furthermore, high glucose-induced inhibition of glucose consumption, glucose uptake, and GLUT4-mediated membrane translocation were reverted by TPX. Accordingly, mechanistic investigations revealed that TPX interacted with AMPK protein and activated the phosphorylation of AKT, thereby improving energy homeostasis and further ameliorating hepatic insulin resistance. Network pharmacology analysis and molecular docking further confirmed AMPK as an active target of TPX. Concordantly, the pharmacological activity of TPX was reversed by the AMPK inhibitor compound C when hepatocytes were exposed to high glucose stimulation.

CONCLUSION

In summary, our study confirmed TPX contributions to insulin resistance improvements by targeting AMPK and PI3K/AKT to restore the insulin signaling pathway, which may be an important potential treatment strategy for insulin-resistance-related diseases, including MAFLD and diabetes.

摘要

背景

胰岛素抵抗是一种多方面的代谢紊乱,伴随着 2 型糖尿病、高胰岛素血症、代谢相关脂肪性肝病(MAFLD)和其他代谢综合征的前期发病。目前,临床上缓解胰岛素抵抗的现有药物和基于机制的策略数量有限。作为一种天然多酚产物衍生物,1,3,6,7-四丙烯酰氧基-酮(TPX)在我们之前的研究中表现出显著的降血糖作用。然而,TPX 是否能改善肝胰岛素敏感性尚不清楚。

目的

探讨 TPX 是否能改善胰岛素敏感性,并进一步研究其作用机制。

方法

为了模拟体外高血糖和胰岛素抵抗,将人 HepG2 和 HL-7702 肝细胞暴露于高葡萄糖中。TPX 处理后,定量检测细胞葡萄糖摄取、葡萄糖消耗、糖原合成和葡萄糖生成。通过 Western blot 和网络药理学分析评估 TPX 对 AMP 激活的蛋白激酶(AMPK)磷酸化、葡萄糖代谢和胰岛素信号转导的影响。构建 GFP 细胞膜型葡萄糖转运体 4(GLUT4)慢病毒转染细胞,研究 TPX 对 GLUT4 动员的影响。通过 DCFH-DA 测量高葡萄糖诱导的胰岛素抵抗细胞中的活性氧(ROS)水平,以显示氧化应激。

结果

TPX 通过调节 GSK3β、G6Pase 和 PEPCK 改善糖原合成并抑制糖异生。此外,TPX 逆转了高葡萄糖诱导的葡萄糖消耗、葡萄糖摄取和 GLUT4 介导的膜转位抑制。相应地,机制研究表明,TPX 与 AMPK 蛋白相互作用并激活 AKT 的磷酸化,从而改善能量平衡,进一步改善肝胰岛素抵抗。网络药理学分析和分子对接进一步证实 AMPK 是 TPX 的一个活性靶点。当肝细胞暴露于高葡萄糖刺激时,与 AMPK 抑制剂化合物 C 共同给药可逆转 TPX 的药理活性。

结论

总之,我们的研究证实,TPX 通过靶向 AMPK 和 PI3K/AKT 来恢复胰岛素信号通路,从而改善胰岛素抵抗,这可能是一种治疗与胰岛素抵抗相关疾病(包括 MAFLD 和糖尿病)的重要潜在治疗策略。

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