Diabetes · 2014 · 52 citations · 20 references
NutritionGastroenterologyInsulin SignalingGastrointestinal Peptide HormoneIncretin EffectObesityMetabolic SyndromeBody CompositionHealth SciencesInsulin ManagementType 2Plasma GlucagonEndocrinologyPharmacologyDiabetesPhysiologyDiabetes MellitusGlucagon SecretionMetabolismMedicine
The potential influence of gastric emptying on the "incretin effect," mediated by glucose-dependent insulinotropic polypeptide (GIP) and glucagon-like peptide-1 (GLP-1), is unknown. The objectives of this study were to determine the effects of intraduodenal (ID) glucose infusions at 2 (ID2) and 4 (ID4) kcal/min (equating to two rates of gastric emptying within the physiological range) on the size of the incretin effect, gastrointestinal glucose disposal (GIGD), plasma GIP, GLP-1, and glucagon secretion in health and type 2 diabetes. We studied 10 male BMI-matched controls and 11 male type 2 patients managed by diet or metformin only. In both groups, GIP, GLP-1, and the magnitude of incretin effect were greater with ID4 than ID2, as was GIGD; plasma glucagon was suppressed by ID2, but not ID4. There was no difference in the incretin effect between the two groups. Based on these data, we conclude that the rate of small intestinal glucose exposure (i.e., glucose load) is a major determinant of the comparative secretion of GIP and GLP-1, as well as the magnitude of the incretin effect and GIGD in health and type 2 diabetes.
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Reduced incretin effect in Type 2 (non-insulin-dependent) diabetes
Michael A. Nauck, F. Stöckmann, R. Ebert et al. · Diabetologia · 1986 · 1.3K citations · Full text
Tina Vilsbøll, Thure Krarup, Sten Madsbad et al. · Regulatory Peptides · 2003 · 421 citations
Metabolic Syndrome, Gastrointestinal Peptide Hormone, Healthy Subjects +11