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Braz. j. med. biol. res ; 30(12): 1437-40, Dec. 1997.
Article in English | LILACS | ID: lil-212588

ABSTRACT

Experiments were carried out in vitro with three viscous polysaccharides (guar gum, pectin, and carboxymethylcellulose (CMC) of similar initial viscosity submitted to conditions that mimic events occurring in the stomach and duodenum, and their viscosity in these situations was compared to their actions on postprandial hyperglycemia in normal human subjects. Guar gum showed greater viscosity than the other gums during acidification and/or alkalinization and also showed larger effects on plasma glucose levels (35 per cent reduction in maximum rise in plasma glucose) and on the total area under the curve of plasma glucose (control: 20,314 + 1007 mg dl(-1) 180 min (-1) vs guar gum: 18,277 + 699 mg dl(-1) 180 min (-1), P<0.01). Pectin, which showed a marked reduction in viscosity at 37 degrees Celsius and after events mimicking those that occur in the stomach and duodenum, did not have a significant effect on postprandial hyperglycemia. The performance of viscosity and the glycemia response to CMC were at an intermediate level between guar gum and pectin. In conclusion, these data suggest that temperature, the process of acidification, alkalinization and exposure to intestinal ions induce different viscosity changes in gums having similar initial viscosity, establishing a direct relationship between a minor decrease of gum viscosity in vitro and a reduction of postprandial hyperglycemia.


Subject(s)
Adult , Female , Humans , Antidiarrheals/pharmacology , Carboxymethylcellulose Sodium/chemistry , Carboxymethylcellulose Sodium/pharmacology , Cathartics/pharmacology , Galactans/chemistry , Galactans/pharmacology , Hyperglycemia , Pectins/chemistry , Pectins/pharmacology , Polysaccharides/chemistry , Polysaccharides/pharmacology , Postprandial Period/drug effects , Viscosity , Hydrogen-Ion Concentration , Intestines/chemistry , Potassium Chloride , Random Allocation , Sodium Bicarbonate , Sodium Chloride , Temperature
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