Literature DB >> 20420761

Effect of the artificial sweetener, sucralose, on small intestinal glucose absorption in healthy human subjects.

Jing Ma1, Jessica Chang, Helen L Checklin, Richard L Young, Karen L Jones, Michael Horowitz, Christopher K Rayner.   

Abstract

It has been reported that the artificial sweetener, sucralose, stimulates glucose absorption in rodents by enhancing apical availability of the transporter GLUT2. We evaluated whether exposure of the proximal small intestine to sucralose affects glucose absorption and/or the glycaemic response to an intraduodenal (ID) glucose infusion in healthy human subjects. Ten healthy subjects were studied on two separate occasions in a single-blind, randomised order. Each subject received an ID infusion of sucralose (4 mM in 0.9% saline) or control (0.9% saline) at 4 ml/min for 150 min (T = - 30 to 120 min). After 30 min (T = 0), glucose (25 %) and its non-metabolised analogue, 3-O-methylglucose (3-OMG; 2.5 %), were co-infused intraduodenally (T = 0-120 min; 4.2 kJ/min (1 kcal/min)). Blood was sampled at frequent intervals. Blood glucose, plasma glucagon-like peptide-1 (GLP-1) and serum 3-OMG concentrations increased during ID glucose/3-OMG infusion (P < 0.005 for each). However, there were no differences in blood glucose, plasma GLP-1 or serum 3-OMG concentrations between sucralose and control infusions. In conclusion, sucralose does not appear to modify the rate of glucose absorption or the glycaemic or incretin response to ID glucose infusion when given acutely in healthy human subjects.

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Year:  2010        PMID: 20420761     DOI: 10.1017/S0007114510001327

Source DB:  PubMed          Journal:  Br J Nutr        ISSN: 0007-1145            Impact factor:   3.718


  49 in total

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7.  Short-Term Consumption of Sucralose with, but Not without, Carbohydrate Impairs Neural and Metabolic Sensitivity to Sugar in Humans.

Authors:  Jelle R Dalenberg; Barkha P Patel; Raphael Denis; Maria G Veldhuizen; Yuko Nakamura; Petra C Vinke; Serge Luquet; Dana M Small
Journal:  Cell Metab       Date:  2020-03-03       Impact factor: 27.287

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9.  Sucralose can improve glucose tolerance and upregulate expression of sweet taste receptors and glucose transporters in an obese rat model.

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10.  Lack of functionally active sweet taste receptors in the jejunum in vivo in the rat.

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