7-Hydroxyflavone improves nonalcoholic fatty liver disease by acting on STK24.
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Yurou Zhang | Siqi Liu | Qichao Liao | Yang Xiao | Xinyi Qi | Lei Zhou | Tianyu Jiang | Yixing Li
[1] M. Mahlapuu,et al. STE20‐type kinases MST3 and MST4 promote the progression of hepatocellular carcinoma: Evidence from human cell culture and expression profiling of liver biopsies , 2023, FASEB journal : official publication of the Federation of American Societies for Experimental Biology.
[2] A. Almansour,et al. Antimicrobial Efficacy of 7-Hydroxyflavone Derived from Amycolatopsis sp. HSN-02 and Its Biocontrol Potential on Cercospora Leaf Spot Disease in Tomato Plants , 2023, Antibiotics.
[3] M. Salem,et al. Productivity and Phytochemicals of Asclepias curassavica in Response to Compost and Silver Nanoparticles Application: HPLC Analysis and Antibacterial Activity of Extracts , 2023, Plants.
[4] A. Allen,et al. Challenges and opportunities in NASH drug development , 2023, Nature Medicine.
[5] L. Janani,et al. Effect of portulaca oleracea (purslane) extract on inflammatory factors in nonalcoholic fatty liver disease: A randomized, double-blind clinical trial , 2023, Journal of Functional Foods.
[6] M. R. Benhnia,et al. Single -and Multi-Walled Carbon Nanotubes as Nanocarriers for the Delivery of 7-Hydroxyflavone , 2022, Pharmaceutics.
[7] M. Szulińska,et al. Berberine in Non-Alcoholic Fatty Liver Disease—A Review , 2022, Nutrients.
[8] M. Mahlapuu,et al. GCKIII kinases in lipotoxicity: Roles in NAFLD and beyond , 2022, Hepatology communications.
[9] Rahim Ullah,et al. The 7-Hydroxyflavone attenuates chemotherapy-induced neuropathic pain by targeting inflammatory pathway. , 2022, International immunopharmacology.
[10] R. DeFronzo,et al. Insulin: The master regulator of glucose metabolism. , 2022, Metabolism: clinical and experimental.
[11] E. Gautier,et al. Immune cell-mediated features of non-alcoholic steatohepatitis , 2021, Nature Reviews Immunology.
[12] M. Safa,et al. Administration of hydro-alcoholic extract of spinach improves oxidative stress and inflammation in high-fat diet-induced NAFLD rats , 2021, BMC Complementary Medicine and Therapies.
[13] H. Tilg,et al. Non-alcoholic fatty liver disease: a multisystem disease requiring a multidisciplinary and holistic approach. , 2021, The lancet. Gastroenterology & hepatology.
[14] J. Borén,et al. Silencing of STE20‐type kinase MST3 in mice with antisense oligonucleotide treatment ameliorates diet‐induced nonalcoholic fatty liver disease , 2021, FASEB journal : official publication of the Federation of American Societies for Experimental Biology.
[15] L. Janani,et al. Effect of Portulaca Oleracea (purslane) extract on liver enzymes, lipid profile, and glycemic status in nonalcoholic fatty liver disease: A randomized, double‐blind clinical trial , 2021, Phytotherapy research : PTR.
[16] A. Mehmood,et al. Dietary anthocyanins as potential natural modulators for the prevention and treatment of non-alcoholic fatty liver disease: A comprehensive review. , 2021, Food research international.
[17] Fuyuan Yang,et al. Hesperetin ameliorates hepatic oxidative stress and inflammation via the PI3K/AKT-Nrf2-ARE pathway in oleic acid-induced HepG2 cells and a rat model of high-fat diet-induced NAFLD. , 2021, Food & function.
[18] B. Staels,et al. Dysregulated lipid metabolism links NAFLD to cardiovascular disease , 2020, Molecular metabolism.
[19] R. Rector,et al. A Fad too Far? Dietary Strategies for the Prevention and Treatment of NAFLD , 2020, Obesity.
[20] H. Tilg,et al. NAFLD and increased risk of cardiovascular disease: clinical associations, pathophysiological mechanisms and pharmacological implications , 2020, Gut.
[21] F. Shidfar,et al. The effects of hydroalcoholic extract of spinach on prevention and treatment of some metabolic and histologic features in a rat model of nonalcoholic fatty liver disease. , 2019, Journal of the science of food and agriculture.
[22] C. Sirlin,et al. Insulin resistance drives hepatic de novo lipogenesis in nonalcoholic fatty liver disease. , 2019, The Journal of clinical investigation.
[23] Zhenzhou Jiang,et al. Quercetin improves nonalcoholic fatty liver by ameliorating inflammation, oxidative stress, and lipid metabolism in db/db mice , 2019, Phytotherapy research : PTR.
[24] J. Borén,et al. Protein kinase MST3 modulates lipid homeostasis in hepatocytes and correlates with nonalcoholic steatohepatitis in humans , 2019, FASEB journal : official publication of the Federation of American Societies for Experimental Biology.
[25] C. Mantzoros,et al. Obesity and nonalcoholic fatty liver disease: From pathophysiology to therapeutics. , 2019, Metabolism: clinical and experimental.
[26] J. González‐Gallego,et al. Beneficial effects of exercise on gut microbiota functionality and barrier integrity, and gut-liver crosstalk in an in vivo model of early obesity and non-alcoholic fatty liver disease , 2019, Disease Models & Mechanisms.
[27] P. Scarborough,et al. Health and nutritional aspects of sustainable diet strategies and their association with environmental impacts: a global modelling analysis with country-level detail , 2018, The Lancet. Planetary health.
[28] Yu Jiang,et al. Protein Kinase Serine/Threonine Kinase 24 Positively Regulates Interleukin 17-Induced Inflammation by Promoting IKK Complex Activation , 2018, Front. Immunol..
[29] F. Shidfar,et al. The Effects of Extra Virgin Olive Oil on Alanine Aminotransferase, Aspartate Aminotransferase, and Ultrasonographic Indices of Hepatic Steatosis in Nonalcoholic Fatty Liver Disease Patients Undergoing Low Calorie Diet , 2018, Canadian journal of gastroenterology & hepatology.
[30] A. Diehl,et al. Cause, Pathogenesis, and Treatment of Nonalcoholic Steatohepatitis , 2017, The New England journal of medicine.
[31] J. Zalvide,et al. The MST3/STK24 kinase mediates impaired fasting blood glucose after a high-fat diet , 2017, Diabetologia.
[32] I. Arany,et al. Differential roles of 3-Hydroxyflavone and 7-Hydroxyflavone against nicotine-induced oxidative stress in rat renal proximal tubule cells , 2017, PloS one.
[33] A. Bast,et al. The potential of flavonoids in the treatment of non-alcoholic fatty liver disease , 2017, Critical reviews in food science and nutrition.
[34] S. Olesen,et al. Discovery of Diverse Small‐Molecule Inhibitors of Mammalian Sterile20‐like Kinase 3 (MST3) , 2016, ChemMedChem.
[35] Shery Jacob,et al. A simple practice guide for dose conversion between animals and human , 2016, Journal of basic and clinical pharmacy.
[36] J. Borén,et al. Protein kinase STK25 controls lipid partitioning in hepatocytes and correlates with liver fat content in humans , 2016, Diabetologia.
[37] L. Hodson,et al. Are oxidative stress mechanisms the common denominator in the progression from hepatic steatosis towards non‐alcoholic steatohepatitis (NASH)? , 2014, Liver international : official journal of the International Association for the Study of the Liver.
[38] R. DeFronzo,et al. Non-Alcoholic Fatty Liver Disease (NAFLD) and Its Connection with Insulin Resistance, Dyslipidemia, Atherosclerosis and Coronary Heart Disease , 2013, Nutrients.
[39] Y. Kawano,et al. Mechanisms of hepatic triglyceride accumulation in non-alcoholic fatty liver disease , 2013, Journal of Gastroenterology.
[40] B. Hemmings,et al. Downstream of human NDR kinases: Impacting on c-myc and p21 protein stability to control cell cycle progression , 2011, Cell cycle.
[41] J. Medina-Franco,et al. A comparative study of flavonoid analogues on streptozotocin-nicotinamide induced diabetic rats: quercetin as a potential antidiabetic agent acting via 11beta-hydroxysteroid dehydrogenase type 1 inhibition. , 2010, European journal of medicinal chemistry.
[42] S. Kuo,et al. Metabolism and pharmacokinetics of 3,3',4',7-tetrahydroxyflavone (fisetin), 5-hydroxyflavone, and 7-hydroxyflavone and antihemolysis effects of fisetin and its serum metabolites. , 2009, Journal of agricultural and food chemistry.
[43] S. Kahn,et al. Review: The role of insulin resistance in nonalcoholic fatty liver disease. , 2006, The Journal of clinical endocrinology and metabolism.
[44] O. Cummings,et al. Design and validation of a histological scoring system for nonalcoholic fatty liver disease , 2005, Hepatology.
[45] Ivano Morelli,et al. Vasorelaxing effects of flavonoids: investigation on the possible involvement of potassium channels , 2004, Naunyn-Schmiedeberg's Archives of Pharmacology.
[46] V. B. Pandey,et al. A chalcone glycoside from Clerodendron phlomidis. , 1994, Phytochemistry.
[47] M. Lai,et al. The oncogenic role of MST3 in human gastric cancer. , 2018, American journal of cancer research.
[48] J. González‐Gallego,et al. Protective effect of quercetin on high‐fat diet‐induced non‐alcoholic fatty liver disease in mice is mediated by modulating intestinal microbiota imbalance and related gut‐liver axis activation , 2017, Free radical biology & medicine.