An Acetate-Specific GPCR, FFAR2, Regulates Insulin Secretion
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GPR41 and GPR43 in Obesity and Inflammation - Protective or Causative?Human and mouse monocytes display distinct signalling and cytokine profiles upon stimulation with FFAR2/FFAR3 short-chain fatty acid receptor agonistsThe short chain fatty acid receptor GPR43 regulates inflammatory signals in adipose tissue M2-type macrophages.The short-chain fatty acid receptor, FFA2, contributes to gestational glucose homeostasis.The metabolic fate of acetate in cancer.FFA2 Contribution to Gestational Glucose Tolerance Is Not Disrupted by AntibioticsGIT2 Acts as a Systems-Level Coordinator of Neurometabolic Activity and Pathophysiological Aging.Loss of Free Fatty Acid Receptor 2 leads to impaired islet mass and beta cell survival.Host Genotype and Gut Microbiome Modulate Insulin Secretion and Diet-Induced Metabolic Phenotypes.Homology modeling of FFA2 identifies novel agonists that potentiate insulin secretion.The Pharmacology and Function of Receptors for Short-Chain Fatty Acids.SCFA Receptors in Pancreatic β Cells: Novel Diabetes Targets?Vinegar as a functional ingredient to improve postprandial glycemic control-human intervention findings and molecular mechanisms.Polymorphic Variation in FFA Receptors: Functions and Consequences.Key Questions for Translation of FFA Receptors: From Pharmacology to Medicines.FFA2 and FFA3 in Metabolic Regulation.The nutrition-gut microbiome-physiology axis and allergic diseases.HKDC1 Is a Novel Hexokinase Involved in Whole-Body Glucose UseEarly life antibiotic exposure affects pancreatic islet development and metabolic regulation.Gut microbial metabolite short-chain fatty acids and obesityFFAR2-FFAR3 receptor heteromerization modulates short-chain fatty acid sensing.Gut Microbiota Dysbiosis Drives and Implies Novel Therapeutic Strategies for Diabetes Mellitus and Related Metabolic Diseases.The diet-derived short chain fatty acid propionate improves beta-cell function in humans and stimulates insulin secretion from human islets in vitro.Ligands at the Free Fatty Acid Receptors 2/3 (GPR43/GPR41).DNA methylation profiles correlated to striped bass sperm fertility.Short-chain fatty acids in control of energy metabolism.
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P2860
An Acetate-Specific GPCR, FFAR2, Regulates Insulin Secretion
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2015 nî lūn-bûn
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2015 թուականի Յուլիսին հրատարակուած գիտական յօդուած
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2015 թվականի հուլիսին հրատարակված գիտական հոդված
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2015年の論文
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2015年論文
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2015年論文
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2015年論文
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2015年論文
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2015年論文
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2015年论文
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name
An Acetate-Specific GPCR, FFAR2, Regulates Insulin Secretion
@ast
An Acetate-Specific GPCR, FFAR2, Regulates Insulin Secretion
@en
An Acetate-Specific GPCR, FFAR2, Regulates Insulin Secretion
@nl
type
label
An Acetate-Specific GPCR, FFAR2, Regulates Insulin Secretion
@ast
An Acetate-Specific GPCR, FFAR2, Regulates Insulin Secretion
@en
An Acetate-Specific GPCR, FFAR2, Regulates Insulin Secretion
@nl
prefLabel
An Acetate-Specific GPCR, FFAR2, Regulates Insulin Secretion
@ast
An Acetate-Specific GPCR, FFAR2, Regulates Insulin Secretion
@en
An Acetate-Specific GPCR, FFAR2, Regulates Insulin Secretion
@nl
P2093
P2860
P50
P3181
P356
P1476
An Acetate-Specific GPCR, FFAR2, Regulates Insulin Secretion
@en
P2093
Barton Wicksteed
Brian T Layden
Helena Mancebo
Miles Fuller
Raghavendra G Mirmira
P2860
P304
P3181
P356
10.1210/ME.2015-1007
P407
P50
P577
2015-06-15T00:00:00Z