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Citations to this article

Effect of cholestyramine on bile acid metabolism in normal man
J. T. Garbutt, T. J. Kenney
J. T. Garbutt, T. J. Kenney
Published November 1, 1972
Citation Information: J Clin Invest. 1972;51(11):2781-2789. https://doi.org/10.1172/JCI107100.
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Research Article

Effect of cholestyramine on bile acid metabolism in normal man

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Abstract

The effect of cholestyramine administration on the enterohepatic circulation of bile acids was studied in eight normal volunteers. In six subjects the metabolism of sodium taurocholate-14C was determined after its intravenous injection before and during the 6th wk of cholestyramine administration, 16 g/day. In two subjects, the metabolism of cholic acid-14C was observed before and during the 2nd wk of cholestyramine, 16 g/day. Bile acid sequestration resulted in a more rapid disappearance of the injected primary bile acid and its metabolic products. The composition of fasting bile acids was promptly altered by cholestyramine to predominantly glycine-conjugated trihydroxy bile acid. In four subjects, unconjugated bile acid-14C was administered during cholestyramine administration; the relative proportion of glycine-conjugated bile acid-14C before enterohepatic circulation was similar to the relative proportion of unlabeled glycine-conjugated bile acid present in duodenal contents after an overnight fast, indicating that a hepatic mechanism was responsible for the elevated ratios of glycine- to taurine-conjugated bile acid (G: T ratios) observed. The relative proportions of both dihydroxy bile acids, chenodeoxycholic and deoxycholic, were significantly reduced. Steatorrhea did not occur, and the total bile acid pool size determined after an overnight fast was unaltered by cholestyramine. These findings suggest that in normal man bile acid sequestered from the enterohepatic circulation by cholestyramine is replaced by an increase in hepatic synthesis primarily via the pathway leading to production of glycocholic acid.

Authors

J. T. Garbutt, T. J. Kenney

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Impaired Lithocholate Sulfation in the Rhesus Monkey: A Possible Mechanism for Chenodeoxycholate Toxicity
TR Gadacz, RN Allan, E Mack, AF Hofmann
Gastroenterology 1976
Effect of Bile Acid Synthesis Rate on Cholesterol Secretion Rate in the Steady State
SM Strasberg, CN Petrunka, RG Ilson
Gastroenterology 1976
Effects of obesity and caloric intake on biliary lipid metabolism in man
LJ Bennion, SM Grundy
Journal of Clinical Investigation 1975
Einundachtzigster Kongress
B Schlegel
1975
Hypolipidemic Agents
D Kritchevsky
1975
Bile acid metabolism in infants and children
GM Murphy, E Signer
Gut 1974
Biliary Deoxycholate in Patients With Alcoholic Cirrhosis
SJ Mehta, JE Struthers, MD Kaye, JL Naylor
Gastroenterology 1974
Estimation of Cholesterol and Bile Acid Turnover in Man by Kinetic Analysis
SH Quarfordt, MF Greenfield
Journal of Clinical Investigation 1973
The Metabolism of Cholestanol, Cholesterol, and Bile Acids in Cerebrotendinous Xanthomatosis
G Salen, SM Grundy
Journal of Clinical Investigation 1973
Advances in Lipid Research
AM Scanu
Advances in Lipid Research 1965

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