Sodium Taurocholate Modifies the Bile Acid-Independent Fraction of Canalicular Bile Flow in the Rhesus Monkey
Open Access
- 1 July 1979
- journal article
- research article
- Published by American Society for Clinical Investigation in Journal of Clinical Investigation
- Vol. 64 (1), 312-320
- https://doi.org/10.1172/jci109453
Abstract
Bile acid-independent secretion and the choleretic response to taurocholate were determined in rhesus monkeys fitted with indwelling silastic cannulas in the common bile ducts. Bile acids were infused intravenously in random order at 3.5, 7.0, or 10.5 μmol/min for 1.5 h each. When data were analyzed with a single regression line, bile flow increased in proportion to the level of bile acid secretion, although the y-intercepts (the conventional measurement of bile acid-independent secretion) varied widely (77.9±40.9 ml/24 h). The variation in y-intercepts was observed between animals and with repeated studies in the same animal and could not be explained by sex differences or the effects of the indwelling silastic cannulas, but seemed to be related to the order of bile acid infusion. With only two taurocholic acid infusion rates (7.0 and 3.5 μmol/min), [14C]erythritol clearance was greater per mole of secreted bile acid when the initial bile acid infusion was at the high level, but approached zero at low bile acid secretion rates, which suggests that so-called bile acid-independent canalicular flow is closely related to bile acid secretion or is small in size. The augmentation in [14C]erythritol clearance when the high infusion rate was given first was also associated with an increase in biliary clearance of [3H]inulin, which indicates that the premeability to inulin was also enhanced. Identical experiments which substituted equimolar infusions of a nonmicelle-forming bile acid (taurodehydrocholate) for taurocholate failed to demonstrate any difference in choleretic response or biliary clearance of [3H]inulin with the order of bile acid infusion. These experiments demonstrate that a micelleforming bile acid, taurocholate, can increase the permeability of the biliary system to large molecular weight solutes and simultaneously modify the y-intercept and the volume of bile secreted in response to the transported bile acid. Taurocholate may, therefore, modify its own choleretic response, perhaps by altering the structure or function of bile secretory membranes, and appears to be a major determinant of so-called bile acid-independent flow in rhesus monkeys.This publication has 29 references indexed in Scilit:
- Cytochemical localization of Na+, K+-ATPase in the rat hepatocyte.Journal of Clinical Investigation, 1978
- Bile Acid-Induced Increase in Bile Acid-Independent Flow and Plasma Membrane NaK-ATPase Activity in Rat LiverJournal of Clinical Investigation, 1978
- Stimulation of hepatic sodium and potassium-activated adenosine triphosphatase activity by phenobarbital. Its possible role in regulation of bile flow.Journal of Clinical Investigation, 1977
- Mechanisms of Hepatic Bile FormationAnnual Review of Physiology, 1977
- EFFECTS OF CHRONIC CHOLERETIC INFUSIONS OF BILE-ACIDS ON MEMBRANE OF BILE CANALICULUS - BIOCHEMICAL AND MORPHOLOGIC STUDY1977
- The effect of thyroid hormone on bile salt-independent bile flow and Na+, K+ -ATPase activity in liver plasma membranes enriched in bile canaliculi.Journal of Clinical Investigation, 1976
- Properties of (Na+ + K+)-activated ATPase in rat liver plasma membranes enriched with bile canaliculiBiochimica et Biophysica Acta (BBA) - Biomembranes, 1975
- Canalicular Bile Production in Man*European Journal of Clinical Investigation, 1975
- Mechanism of secretion of biliary lipids. I. Role of bile canalicular and microsomal membranes in the synthesis and transport of biliary lecithin and cholesterol.Journal of Clinical Investigation, 1975
- Analysis of the components of bile flow in the rhesus monkeyAmerican Journal of Physiology-Legacy Content, 1975