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Carpachromene Ameliorates Insulin Resistance in HepG2 Cells via Modulating IR/IRS1/PI3k/Akt/GSK3/FoxO1 Pathway

胰岛素抵抗 IRS1 蛋白激酶B 胰岛素 IRS2 PI3K/AKT/mTOR通路 胰岛素受体 福克斯O1 胰岛素受体底物 糖原 糖原合酶 内科学 内分泌学 磷酸烯醇丙酮酸羧激酶 己糖激酶 化学 活力测定 免疫印迹 二甲双胍 生物 新陈代谢 磷酸化 生物化学 细胞 信号转导 医学 糖酵解 基因
作者
Rania Alaaeldin,Iman A. M. Abdel-Rahman,Heba Ali Hassan,Nancy Youssef,Ahmed E. Allam,Sayed F. Abdelwahab,Qing‐Li Zhao,Moustafa Fathy
出处
期刊:Molecules [Multidisciplinary Digital Publishing Institute]
卷期号:26 (24): 7629-7629 被引量:61
标识
DOI:10.3390/molecules26247629
摘要

Insulin resistance contributes to several disorders including type 2 diabetes and cardiovascular diseases. Carpachromene is a natural active compound that inhibits α-glucosidase enzyme. The aim of the present study is to investigate the potential activity of carpachromene on glucose consumption, metabolism and insulin signalling in a HepG2 cells insulin resistant model. A HepG2 insulin resistant cell model (HepG2/IRM) was established. Cell viability assay of HepG2/IRM cells was performed after carpachromene/metformin treatment. Glucose concentration and glycogen content were determined. Western blot analysis of insulin receptor, IRS1, IRS2, PI3k, Akt, GSK3, FoxO1 proteins after carpachromene treatment was performed. Phosphoenolpyruvate carboxykinase (PEPCK) and hexokinase (HK) enzymes activity was also estimated. Viability of HepG2/IRM cells was over 90% after carpachromene treatment at concentrations 6.3, 10, and 20 µg/mL. Treatment of HepG2/IRM cells with carpachromene decreased glucose concentration in a concentration- and time-dependant manner. In addition, carpachromene increased glycogen content of HepG2/IRM cells. Moreover, carpachromene treatment of HepG2/IRM cells significantly increased the expression of phosphorylated/total ratios of IR, IRS1, PI3K, Akt, GSK3, and FoxO1 proteins. Furthermore, PEPCK enzyme activity was significantly decreased, and HK enzyme activity was significantly increased after carpachromene treatment. The present study examined, for the first time, the potential antidiabetic activity of carpachromene on a biochemical and molecular basis. It increased the expression ratio of insulin receptor and IRS1 which further phosphorylated/activated PI3K/Akt pathway and phosphorylated/inhibited GSK3 and FoxO1 proteins. Our findings revealed that carpachromene showed central molecular regulation of glucose metabolism and insulin signalling via IR/IRS1/ PI3K/Akt/GSK3/FoxO1 pathway.

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