ArticleNutrients2024
Exogenous Nucleotides Ameliorate Insulin Resistance Induced by Palmitic Acid in HepG2 Cells through the IRS-1/AKT/FOXO1 Pathways.
Article in Nutrients, 2024. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 11 papers.
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Who cites it
11 citing papers in PubMed.
- Nucleotides as an Anti-Aging Supplementation in Older Adults: A Randomized Controlled Trial (TALENTs study).Advanced science (Weinheim, Baden-Wurttemberg, Germany) · 2025Trial
- Concurrent Inhibition of AKT and GLUT1 Reveals Endpoint-Specific Effects on Glucose Metabolism and Cell Death in HepG2 Hepatocyte-Derived Cells.Biomedicines · 2026Article
- Dietary Nucleotides as Potential Modulators of Inflammatory and Metabolic Pathways with Implications for Insulin Resistance.International journal of molecular sciences · 2026Review
- Curcumin ameliorates hepatic insulin resistance by activating PINK1/Parkin-mediated mitophagy.Scientific reports · 2026Article
- Peptides From Adzuki Bean and Soybean Improved Insulin-AKT Signaling-Related Pathways in Healthy and Insulin-Resistant States in Human Liver Cells.Molecular nutrition & food research · 2025Article
- Optimizing DCD donor liver function with resveratrol during machine perfusion.Scientific reports · 2025Article
- Novel Experimental Dietary Supplementations to Combat Metabolic Alterations in Diabetes.Nutrients · 2025Article
- Article
- Establishment and Evaluation of HepG2 Cell Insulin Resistance Model.Diabetes, metabolic syndrome and obesity : targets and therapy · 2025Article
- Evaluation of cadmium effects on the glucose metabolism on insulin resistance HepG2 cells.Heliyon · 2024Article
- Insulin resistance and Alzheimer's disease: Exploring research hotspots and frontiers from a bibliometric and visual analysis (2005-2024).Journal of Alzheimer's disease reportsReview
Corrections and comments
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Authors and funding
3 authors.
Funding
Abstract
Nucleotides (NTs) act as pivotal regulatory factors in numerous biological processes, playing indispensable roles in growth, development, and metabolism across organisms. This study delves into the effects of exogenous NTs on hepatic insulin resistance using palmitic-acid-induced HepG2 cells, administering interventions at three distinct dosage levels of exogenous NTs. The findings underscore that exogenous NT intervention augments glucose consumption in HepG2 cells, modulates the expression of glycogen-synthesis-related enzymes (glycogen synthase kinase 3β and glycogen synthase), and influences glycogen content. Additionally, it governs the expression levels of hepatic enzymes (hexokinase, phosphoenolpyruvate carboxykinase, and glucose-6-phosphatase). Moreover, exogenous NT intervention orchestrates insulin signaling pathway (insulin receptor substrate-1, protein kinase B, and forkhead box protein O1) and AMP-activated protein kinase (AMPK) activity in HepG2 cells. Furthermore, exogenous NT intervention fine-tunes the expression levels of oxidative stress-related markers (malondialdehyde, glutathione peroxidase, and NADPH oxidase 4) and the expression of inflammation-related nuclear transcription factor (NF-κB). Lastly, exogenous NT intervention regulates the expression levels of glucose transporter proteins (GLUTs). Consequently, exogenous NTs ameliorate insulin resistance in HepG2 cells by modulating the IRS-1/AKT/FOXO1 pathways and regulate glucose consumption, glycogen content, insulin signaling pathways, AMPK activity, oxidative stress, and inflammatory status.
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Registered trials
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