Ameliorative effects of mangiferin derivative TPX on insulin resistance via PI3K/AKT and AMPK signaling pathways in human HepG2 and HL-7702 hepatocytes.
暂无分享,去创建一个
Wansheng Chen | Zhiqing He | Xiangcheng Fan | Feng Zhang | Tao Wen | Guangyang Jiao | T. Pang | Jun Han
[1] Hu Zhou,et al. Celastrol suppresses colorectal cancer via covalent targeting peroxiredoxin 1 , 2023, Signal Transduction and Targeted Therapy.
[2] Xincong Kang,et al. The glucotoxicity protecting effect of honokiol in human hepatocytes via directly activating AMPK , 2022, Frontiers in Nutrition.
[3] D. Hardie,et al. New insights into activation and function of the AMPK , 2022, Nature Reviews Molecular Cell Biology.
[4] Xianming Deng,et al. The aldolase inhibitor aldometanib mimics glucose starvation to activate lysosomal AMPK , 2022, Nature Metabolism.
[5] Pei Xu,et al. PACAP attenuates hepatic lipid accumulation through the FAIM/AMPK/IRβ axis during overnutrition , 2022, Molecular metabolism.
[6] Hanmei Xu,et al. Trends in insulin resistance: insights into mechanisms and therapeutic strategy , 2022, Signal Transduction and Targeted Therapy.
[7] J. Zou,et al. Aberrant HSF1 signaling activation underlies metformin amelioration of myocardial infarction in mice , 2022, Molecular therapy. Nucleic acids.
[8] M. Fu,et al. A diarylheptanoid compound from Alpinia officinarum Hance ameliorates high glucose-induced insulin resistance by regulating PI3K/AKT-Nrf2-GSK3β signaling pathways in HepG2 cells. , 2022, Journal of ethnopharmacology.
[9] C. Myung,et al. Garcinia Cambogia Improves High-Fat Diet-Induced Glucose Imbalance By Enhancing Calcium/CaMKII/AMPK/GLUT4-Mediated Glucose Uptake In Skeletal Muscle. , 2022, Molecular nutrition & food research.
[10] Yan Liang,et al. The management of diabetes mellitus by mangiferin: advances and prospects. , 2022, Nanoscale.
[11] R. DeFronzo,et al. Insulin: The master regulator of glucose metabolism. , 2022, Metabolism: clinical and experimental.
[12] Yan Yang,et al. Gentiopicroside targets PAQR3 to activate the PI3K/AKT signaling pathway and ameliorate disordered glucose and lipid metabolism , 2022, Acta pharmaceutica Sinica. B.
[13] Dong Wang,et al. Dendrocalamus latiflorus and its component rutin exhibit glucose-lowering activities by inhibiting hepatic glucose production via AKT activation , 2021, Acta pharmaceutica Sinica. B.
[14] Haile Ma,et al. Mangiferin: a review of dietary sources, absorption, metabolism, bioavailability, and safety. , 2021, Critical reviews in food science and nutrition.
[15] Yongqiang Wang,et al. Fructose‐1,6‐Bisphosphate Aldolase B Depletion Promotes Hepatocellular Carcinogenesis Through Activating Insulin Receptor Signaling and Lipogenesis , 2021, Hepatology.
[16] D. James,et al. The aetiology and molecular landscape of insulin resistance , 2021, Nature Reviews Molecular Cell Biology.
[17] Nuo Xu,et al. Chrysin Improves Glucose and Lipid Metabolism Disorders by Regulating the AMPK/PI3K/AKT Signaling Pathway in Insulin-Resistant HepG2 Cells and HFD/STZ-Induced C57BL/6J Mice. , 2021, Journal of agricultural and food chemistry.
[18] C. Xing,et al. Comparative efficacy of oral insulin sensitizers metformin, thiazolidinediones, inositol, and berberine in improving endocrine and metabolic profiles in women with PCOS: a network meta-analysis , 2021, Reproductive Health.
[19] Zhi Li,et al. Metformin protects against insulin resistance induced by high uric acid in cardiomyocytes via AMPK signalling pathways in vitro and in vivo , 2021, bioRxiv.
[20] Wei Li,et al. S-Allylmercaptocysteine improves alcoholic liver disease partly through a direct modulation of insulin receptor signaling , 2020, Acta pharmaceutica Sinica. B.
[21] Fatma S. A. Saadeldeen,et al. Natural products: Regulating glucose metabolism and improving insulin resistance , 2020, Food Science and Human Wellness.
[22] Li Fang,et al. Peptides from walnut (Juglans mandshurica Maxim.) protect hepatic HepG2 cells from high glucose-induced insulin resistance and oxidative stress. , 2020, Food & function.
[23] Min Wang,et al. Polyphenol-rich extract of Zhenjiang aromatic vinegar ameliorates high glucose-induced insulin resistance by regulating JNK-IRS-1 and PI3K/Akt signaling pathways. , 2020, Food chemistry.
[24] Shijie Cao,et al. Curcumin metabolites contribute to the effect of curcumin on ameliorating insulin sensitivity in high-glucose-induced insulin-resistant HepG2 cells. , 2020, Journal of ethnopharmacology.
[25] S. Rahman,et al. Mangiferin induces the expression of a thermogenic signature via AMPK signaling during brown-adipocyte differentiation. , 2020, Food and chemical toxicology : an international journal published for the British Industrial Biological Research Association.
[26] Yan Guo,et al. Identification of endogenous 1‐aminopyrene as a novel mediator of progressive chronic kidney disease via aryl hydrocarbon receptor activation , 2020, British journal of pharmacology.
[27] H. Lebovitz. Thiazolidinediones: the Forgotten Diabetes Medications , 2019, Current Diabetes Reports.
[28] B. Viollet,et al. Understanding the glucoregulatory mechanisms of metformin in type 2 diabetes mellitus , 2019, Nature Reviews Endocrinology.
[29] J. Zhao,et al. Therapeutic Mechanisms of Herbal Medicines Against Insulin Resistance: A Review , 2019, Front. Pharmacol..
[30] Radhika S. Khetani,et al. Insulin Receptor Associates with Promoters Genome-wide and Regulates Gene Expression , 2019, Cell.
[31] H. Hosseinzadeh,et al. Berberine and barberry (Berberis vulgaris): A clinical review , 2019, Phytotherapy research : PTR.
[32] Rongsheng Tong,et al. Mangiferin: An effective therapeutic agent against several disorders (Review). , 2018, Molecular medicine reports.
[33] G. Shulman,et al. Mechanisms of Insulin Action and Insulin Resistance. , 2018, Physiological reviews.
[34] Guihua Liu,et al. The PI3K/AKT pathway in obesity and type 2 diabetes , 2018, International journal of biological sciences.
[35] B. Viollet,et al. Promise and challenges for direct small molecule AMPK activators , 2018, Biochemical pharmacology.
[36] Weimin Li,et al. Astragaloside IV Inhibits Triglyceride Accumulation in Insulin-Resistant HepG2 Cells via AMPK-Induced SREBP-1c Phosphorylation , 2018, Front. Pharmacol..
[37] Yi Zhang,et al. Mangiferin Improves Hepatic Lipid Metabolism Mainly Through Its Metabolite-Norathyriol by Modulating SIRT-1/AMPK/SREBP-1c Signaling , 2018, Front. Pharmacol..
[38] Ivana V. Yang,et al. Maternal obesity alters fatty acid oxidation, AMPK activity, and associated DNA methylation in mesenchymal stem cells from human infants , 2017, Molecular metabolism.
[39] Yeji Kim,et al. AMPK activators: mechanisms of action and physiological activities , 2016, Experimental & Molecular Medicine.
[40] Hongliang Li,et al. Hepatocyte TRAF3 promotes liver steatosis and systemic insulin resistance through targeting TAK1-dependent signalling , 2016, Nature Communications.
[41] Honggang Hu,et al. X-3, a mangiferin derivative, stimulates AMP-activated protein kinase and reduces hyperglycemia and obesity in db/db mice , 2015, Molecular and Cellular Endocrinology.
[42] C. Palmer,et al. Association of Organic Cation Transporter 1 With Intolerance to Metformin in Type 2 Diabetes: A GoDARTS Study , 2014, Diabetes.
[43] G. Shulman,et al. Mechanisms for Insulin Resistance: Common Threads and Missing Links , 2012, Cell.
[44] Mengwei Zang,et al. AMPK phosphorylates and inhibits SREBP activity to attenuate hepatic steatosis and atherosclerosis in diet-induced insulin-resistant mice. , 2011, Cell metabolism.