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R F Hanson

Publications and source records attributed to R F Hanson.

39 records · Page 3Linked to original sources

The formation and metabolism of 3 ,7 -dihydroxy-5 -cholestan-26-oic acid in man.

The formation and metabolism of a naturally occurring C(27) bile acid, 3alpha,7alpha-dihydroxy-5beta-cholestan-26-oic acid, was studied in patients with T-tube bile fistulas. C-26-cholesterol-(14)C was shown to be converted to this C(27) bile acid. After synthesis and labeling with tritium, 3alpha,7alpha-dihydroxy-5beta-cholestan-26-oic acid was efficiently metabolized to chenodeoxycholic acid. After oral and i.v. administration there was conversion of about 80% of the administered amount to chenodeoxycholic acid. A small amount, less than 2% of the administered radioactivity, was converted to cholic acid. The remainder of the radioactivity was excreted in two unidentified peaks of radioactivity. The results of this study demonstrate that 3alpha,7alpha-dihydroxy-5beta-cholestan-26-oic acid is a metabolic product of cholesterol and is further metabolized, predominantly to chenodeoxycholic acid and to a minor extent to cholic acid in man.

Bile↗

Metabolism of deoxycholic acid in bile fistula patients.

Although it has been assumed that the secondary bile acid deoxycholic acid is not rehydroxylated by the human liver, little direct evidence is available to support this assumption. To investigate the metabolism of deoxycholic acid in man, deoxycholic acid-(14)C was given intravenously to two patients with complete external bile fistulas. After hydrolysis of the bile salts and chromatographic separation of bile acids, more than 94% of the radioactivity was found in deoxycholic acid and the remainder was scattered in several small unidentified peaks, none of which was cholic acid. Approximately 85% of deoxycholate was excreted as glycine conjugates and 13% as taurine conjugates in this experiment. No detectable sulfate esters were found. These results indicate that the metabolism of deoxycholic acid in man involves only the reconjugation with glycine and taurine without rehydroxylation to cholic acid or sulfation.

Aged↗