GLUT2 hepatic
Selected indexed studies
- Dihydromyricetin ameliorates hepatic steatosis and insulin resistance via AMPK/PGC-1α and PPARα-mediated autophagy pathway. (J Transl Med, 2024) [PMID:38532480]
- Tangerine Peel-Derived Exosome-Like Nanovesicles Alleviate Hepatic Steatosis Induced by Type 2 Diabetes: Evidenced by Regulating Lipid Metabolism and Intestinal Microflora. (Int J Nanomedicine, 2024) [PMID:39371479]
- Bile acid nuclear receptor FXR and digestive system diseases. (Acta Pharm Sin B, 2015) [PMID:26579439]
_Worker-drafted node — pending editorial review._
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- Dihydromyricetin ameliorates hepatic steatosis and insulin resistance via AMPK/PGC-1α and PPARα-mediated autophagy pathway. (2024) pubmed
- Tangerine Peel-Derived Exosome-Like Nanovesicles Alleviate Hepatic Steatosis Induced by Type 2 Diabetes: Evidenced by Regulating Lipid Metabolism and Intestinal Microflora. (2024) pubmed
- Bile acid nuclear receptor FXR and digestive system diseases. (2015) pubmed
- PXR activation impairs hepatic glucose metabolism partly via inhibiting the HNF4α-GLUT2 pathway. (2022) pubmed
- VEGFB ameliorates insulin resistance in NAFLD via the PI3K/AKT signal pathway. (2024) pubmed
- Berberine directly targets AKR1B10 protein to modulate lipid and glucose metabolism disorders in NAFLD. (2024) pubmed
- Hepatocyte TMEM16A Deletion Retards NAFLD Progression by Ameliorating Hepatic Glucose Metabolic Disorder. (2020) pubmed
- Genetic depletion of Soat2 diminishes hepatic steatosis via genes regulating de novo lipogenesis and by GLUT2 protein in female mice. (2019) pubmed
- Ferulic acid regulates hepatic GLUT2 gene expression in high fat and fructose-induced type-2 diabetic adult male rat. (2015) pubmed
- Developmental exposure to DEHP alters hepatic glucose uptake and transcriptional regulation of GLUT2 in rat male offspring. (2019) pubmed