Effects of some poorly digestible carbohydrates on bile acid bacterial transformations in the rat
- 1 July 1989
- journal article
- research article
- Published by Cambridge University Press (CUP) in British Journal of Nutrition
- Vol. 62 (1) , 103-119
- https://doi.org/10.1079/bjn19890011
Abstract
The effects of ingestion of poorly digestible carbohydrates on bacterial transformations of cholic acid and β-muricholic acid were studied in rats fed on increasing levels of lactose, lactulose, amylomaize or potato starches. Each level was given for 3 weeks and, at the end of each dietary treatment, bile acid faecal composition was analysed and a group of six rats was killed every 4 h during 24 h to determine the amounts of fermented carbohydrate and fermentation characteristics (caecal pH, volatile fatty acids (VFA) and lactic acid concentrations). Fermentation of carbohydrates decreased caecal pH and enhanced caecal VFA and lactic acid concentrations. Irrespective of the poorly digestible carbohydrate, the variation of bacterial transformation always occurred in the same way: the bacterial transformation of β-muricholic acid into hyodeoxycholic acid was the first to disappear, while ω-muricholic acid formation increased; second, cholic acid transformation decreased and finally all bile acid transformations were strongly affected. There was a significant correlation between bile acid transfer and the minimal caecal pH in vivo. This effect of pH was similar in vitro. To determine whether the levels of bacteria which transformed bile acids were modified, rats fed on the highest amounts of poorly digestible carbohydrates were introduced into isolators and carbohydrate feeding was stopped. Caecal pH recovered its initial value but bile acid transformations remained changed, suggesting that the intestinal microflora were modified by ingestion of fermentable carbohydrates.Keywords
This publication has 25 references indexed in Scilit:
- Effects of the fibre components pectin, cellulose, and lignin on bile salt metabolism and biliary lipid composition in man.Gut, 1986
- Dietary fiber and cholesterol and bile acid metabolism in axenic (germfree) and holoxenic (conventional) rats. — III. Effect of non-sterilized pectinReproduction Nutrition Développement, 1985
- Effect of amylomaize starch on cholesterol and bile acid metabolisms in germfree (axenic) and conventional (holoxenic) ratsReproduction Nutrition Développement, 1983
- The influence of a diet rich in wheat fibre on the human faecal floraJournal of Medical Microbiology, 1976
- Dégradation bactérienne de I'acide β-muricholique chez le ratAnnals of Nutrition and Metabolism, 1974
- Alteration of Bile Salt Metabolism by Dietary Fibre (Bran)BMJ, 1973
- Improved gas chromatography separation of free acids C2-C5 in dilute solutionAnalytical Chemistry, 1971
- Degradation of steroids by intestinal bacteria II. Enzymes catalysing the oxidoreduction of the 3α-, 7α- and 12α-hydroxyl groups in cholic acid, and the dehydroxylation of the 7-hydroxyl groupBiochimica et Biophysica Acta (BBA) - Lipids and Lipid Metabolism, 1970
- Degradation of steroids by intestinal bacteria I. Deconjugation of bile saltsBiochimica et Biophysica Acta (BBA) - Lipids and Lipid Metabolism, 1970
- ISOLATED FECAL MICROORGANISMS CAPABLE OF 7 α-DEHYDROXYLATING BILE ACIDSThe Journal of Experimental Medicine, 1966