ArticleFrontiers in endocrinology2017
Is There a Role for Bioactive Lipids in the Pathobiology of Diabetes Mellitus?
Article in Frontiers in endocrinology, 2017. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 28 papers.
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Who cites it
28 citing papers in PubMed, 50 citations in OpenAlex.
- One-Year Effects of High-Intensity Statin on Bioactive Lipids: Findings From the JUPITER Trial.Arteriosclerosis, thrombosis, and vascular biology · 2024Trial
- Exposure to Fluoride During Pregnancy and Lactation Induces Metabolic Imbalance in Pancreas: A Toxicological Insight Using the Rat Model.International journal of molecular sciences · 2025Article
- Arachidonic acid in aging: New roles for old players.Journal of advanced research · 2025Review
- Lipoxin A4 (LXA4) as a Potential Drug for Diabetic Retinopathy.Medicina (Kaunas, Lithuania) · 2025Review
- Correlation of the triglyceride-glucose-body mass index with all-cause and cardiovascular mortality in patients undergoing peritoneal dialysis: a retrospective cohort study.Frontiers in nutrition · 2025Article
- Short-Chain Fatty-Acid-Producing Micro-Organisms Regulate the Pancreatic FFA2-Akt/PI3K Signaling Pathway in a Diabetic Rat Model Affected by Pumpkin Oligosaccharides.Foods (Basel, Switzerland) · 2023Article
- Industrial and Ruminant Trans-Fatty Acids-Enriched Diets Differentially Modulate the Microbiome and Fecal Metabolites in C57BL/6 Mice.Nutrients · 2023Article
- Blood indices of omega-3 and omega-6 polyunsaturated fatty acids are altered in hyperglycemia.Saudi journal of biological sciences · 2023Article
- Dietary inflammatory potential is associated with sarcopenia in patients with hypertension: national health and nutrition examination study.Frontiers in nutrition · 2023Article
- Association of the dietary inflammation index (DII) with the prevalence of chronic kidney disease in patients with type-2 diabetes mellitus.Renal failure · 2023Article
- Advanced lung cancer inflammation index is associated with long-term cardiovascular death in hypertensive patients: national health and nutrition examination study, 1999-2018.Frontiers in physiology · 2023Article
- Syntaxin interacts with arachidonic acid to prevent diabetes mellitus.Lipids in health and disease · 2022Article
- CaProstaglandins & other lipid mediators · 2022Article
- LTBDiabetes · 2021Article
- Article
- Metabolism pathways of arachidonic acids: mechanisms and potential therapeutic targets.Signal transduction and targeted therapy · 2021Review
- Metabolic and Metabolomic Insights Regarding the Omega-3 PUFAs Intake in Type 1 Diabetes Mellitus.Frontiers in molecular biosciences · 2021Review
- Potential association of plasma lysophosphatidic acid (LPA) species with cognitive impairment in abstinent alcohol use disorders outpatients.Scientific reports · 2020Article
- Clinical Significance of Electronegative Low-Density Lipoprotein Cholesterol in Atherothrombosis.Biomedicines · 2020Review
- Review
Corrections and comments
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1 author.
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Abstract
Inflammation, decreased levels of circulating endothelial nitric oxide (eNO) and brain-derived neurotrophic factor (BDNF), altered activity of hypothalamic neurotransmitters (including serotonin and vagal tone) and gut hormones, increased concentrations of free radicals, and imbalance in the levels of bioactive lipids and their pro- and anti-inflammatory metabolites have been suggested to play a role in diabetes mellitus (DM). Type 1 diabetes mellitus (type 1 DM) is due to autoimmune destruction of pancreatic β cells because of enhanced production of IL-6 and tumor necrosis factor-α (TNF-α) and other pro-inflammatory cytokines released by immunocytes infiltrating the pancreas in response to unknown exogenous and endogenous toxin(s). On the other hand, type 2 DM is due to increased peripheral insulin resistance secondary to enhanced production of IL-6 and TNF-α in response to high-fat and/or calorie-rich diet (rich in saturated and trans fats). Type 2 DM is also associated with significant alterations in the production and action of hypothalamic neurotransmitters, eNO, BDNF, free radicals, gut hormones, and vagus nerve activity. Thus, type 1 DM is because of excess production of pro-inflammatory cytokines close to β cells, whereas type 2 DM is due to excess of pro-inflammatory cytokines in the systemic circulation. Hence, methods designed to suppress excess production of pro-inflammatory cytokines may form a new approach to prevent both type 1 and type 2 DM. Roux-en-Y gastric bypass and similar surgeries ameliorate type 2 DM, partly by restoring to normal: gut hormones, hypothalamic neurotransmitters, eNO, vagal activity, gut microbiota, bioactive lipids, BDNF production in the gut and hypothalamus, concentrations of cytokines and free radicals that results in resetting glucose-stimulated insulin production by pancreatic β cells. Our recent studies suggested that bioactive lipids, such as arachidonic acid, eicosapentaneoic acid, and docosahexaenoic acid (which are unsaturated fatty acids) and their anti-inflammatory metabolites: lipoxin A4, resolvins, protectins, and maresins, may have antidiabetic actions. These bioactive lipids have anti-inflammatory actions, enhance eNO, BDNF production, restore hypothalamic dysfunction, enhance vagal tone, modulate production and action of ghrelin, leptin and adiponectin, and influence gut microbiota that may explain their antidiabetic action. These pieces of evidence suggest that methods designed to selectively deliver bioactive lipids to pancreatic β cells, gut, liver, and muscle may prevent type 1 and type 2 DM.
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