ArticleMolecular medicine reports2022
Reducing VEGFB expression regulates the balance of glucose and lipid metabolism in mice via VEGFR1.
Article in Molecular medicine reports, 2022. 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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11 citing papers in PubMed, 18 citations in OpenAlex.
- Influence and treatment of insulin receptor substrate/PI3K/Akt‑mediated insulin resistance in diabetes mellitus (Review).Molecular medicine reports · 2026Review
- Global knockout of VEGFB improves lipoprotein lipase activity leading to an improved lipid profile during diabetes.Frontiers in pharmacology · 2026Article
- Homeostasis of glucose and lipid metabolism during physiological responses to a simulated hypoxic high altitude environment.Nature communications · 2025Article
- Association between estimated glucose disposal rate and the risk of MAFLD in American adults: a cross-sectional study.Scientific reports · 2025Article
- GRAMD1B is a regulator of lipid homeostasis, autophagic flux and phosphorylated tau.Nature communications · 2025Article
- Cell death pathway regulation by fatty acid metabolism-related genes in neuroblastoma: a multi-omics analysis identifying CHD5 as a novel biomarker.Discover oncology · 2025Article
- Constructing a Glioblastoma Prognostic Model Related to Fatty Acid Metabolism Using Machine Learning and Identifying F13A1 as a Potential Target.Biomedicines · 2025Article
- CD47-mediated regulation of glucose and lipid metabolism: implications for the pathogenesis of MASLD.Frontiers in endocrinology · 2025Review
- Article
- Vascular endothelial growth factor B improves impaired glucose tolerance through insulin-mediated inhibition of glucagon secretion.World journal of diabetes · 2023Article
- Fatty acid metabolism is related to the immune microenvironment changes of gastric cancer and RGS2 is a new tumor biomarker.Frontiers in immunology · 2022Article
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Authors and funding
7 authors at 2 institutions in 1 country.
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No grant is acknowledged in the PubMed record.
Abstract
In recent years, studies have demonstrated that vascular endothelial growth factor B (VEGFB) can affect the metabolism of fatty acids and glucose, and it is expected to become a target for the diagnosis and treatment of metabolic diseases such as obesity and diabetes. At present, the specific mechanism that VEGFB regulates lipid and glucose metabolism balance is not completely understood. The present study used systemic VEGFB gene‑knockout mice to investigate the effects of downregulation of the VEGFB gene on lipid metabolism and insulin secretion, and to explore the mechanism of the VEGFB pathway involved in the regulation of glucose and lipid metabolism. The morphological changes in the liver and pancreas of mice after VEGFB gene deletion were observed under a light microscope and a scanning electron microscope, and the effects of VEGFB gene deletion on lipid metabolism and blood glucose balance were detected by a serological technique. The detection indexes included total cholesterol (TC), triglyceride (TG), low‑density lipoprotein cholesterol (LDL‑C) and high‑density lipoprotein cholesterol. Simultaneously, fasting blood glucose, glycosylated hemoglobin A1c (HbA1c), fasting insulin and glucagon were measured. Insulin sensitivity was assessed by using the insulin tolerance tests and glucose tolerance tests, and function of β‑cell islets was evaluated by using the insulin resistance index (HOMA‑IR) and pancreatic β‑cell secretion index (HOMA‑β). Τhe protein expression changes of vascular endothelial growth factor receptor 1 (VEGFR1) and vascular endothelial growth factor receptor 2 (VEGFR2) in mouse islets were detected by western blotting and reverse transcription‑quantitative polymerase chain reaction (RT‑qPCR) after the VEGFB gene was knocked down to analyze the mechanism of VEGFB that may be involved in glucose and lipid metabolism. It was observed that after VEGFB was knocked down, mouse hepatocytes exhibited steatosis and increased secretory vesicles in islet cells. The lipid metabolism indexes such as TG, TC and LDL increased significantly; however, the levels of FBS, postprandial blood glucose and HbA1c decreased, whereas the glucose tolerance increased. Serum insulin secretion increased and HOMA‑IR decreased since VEGFB was knocked down. Western blotting and RT‑qPCR results revealed that the expression levels of VEGFR1 and neuropilin‑1 decreased after the VEGFB gene was knocked down, while the expression levels of VEGFA and VEGFR2 increased. The absence of VEGFB may be involved in the regulation of glucose and lipid metabolism in mice by activating the VEGFA/VEGFR2 signaling pathway. VEGFB is expected to become a new target for the treatment of metabolic diseases such as obesity and diabetes. At present, the mechanism of VEGFB involved in regulating lipid metabolism and glucose metabolism is not completely clear. It was identified that downregulating VEGFB improved lipid metabolism and insulin resistance. The role of VEGFB/VEGFR1 pathway and other family members in regulating glucose and lipid metabolism was detected, which provided a theoretical and experimental basis for VEGFB to affect the regulation of glucose and lipid metabolism balance.
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