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Citations to this article

Effects of ion substitution on bile acid-dependent and -independent bile formation by rat liver.
R W Van Dyke, … , J E Stephens, B F Scharschmidt
R W Van Dyke, … , J E Stephens, B F Scharschmidt
Published September 1, 1982
Citation Information: J Clin Invest. 1982;70(3):505-517. https://doi.org/10.1172/JCI110642.
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Research Article

Effects of ion substitution on bile acid-dependent and -independent bile formation by rat liver.

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Abstract

To characterize the transport mechanisms responsible for formation of canalicular bile, we have examined the effects of ion substitution on bile acid-dependent and bile acid-independent bile formation by the isolated perfused rat liver. Complete replacement of perfusate sodium with choline and lithium abolished taurocholate-induced choleresis and reduced biliary taurocholate output by greater than 70%. Partial replacement of perfusate sodium (25 of 128 mM) by choline reduced bile acid-independent bile formation by 30% and replacement of the remaining sodium (103 mM) by choline reduced bile acid-independent bile formation by an additional 64%. In contrast, replacement of the remaining sodium (103 mM) by lithium reduced bile acid-independent bile formation by only an additional 20%, while complete replacement of sodium (128 mM) by lithium reduced bile formation by only 17%, and lithium replaced sodium as the predominant biliary cation. Replacement of perfusate bicarbonate by Tricine, a zwitterionic amino acid buffer, decreased bile acid-independent bile formation by greater than or equal to 50% and decreased biliary bicarbonate output by approximately 60%, regardless of the accompanying cation. In separate experiments, replacement of sodium by lithium essentially abolished Na,K-ATPase activity measured either as ouabain-suppressible ATP hydrolysis in rat liver or kidney homogenates, or as ouabain-suppressible 86Rb uptake by cultured rat hepatocytes. These studies indicate that bile acid(taurocholate)-dependent bile formation by rat liver exhibits a specific requirement for sodium, a finding probably attributable to the role(s) of sodium in hepatic sodium-coupled taurocholate uptake and/or in maintenance of Na,K-ATPase activity. The surprising finding that bile acid-independent bile formation was substantially unaltered by complete replacement of sodium with the permeant cation lithium does not appear to be explained by Na,K-ATPase-mediated lithium transport. Although alternative interpretations exist, this observation is consistent with the hypothesis that much of basal bile acid-independent bile formation is attributable to an ion pump other than Na,K-ATPase, which directly or indirectly mediates bicarbonate transport.

Authors

R W Van Dyke, J E Stephens, B F Scharschmidt

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Total citations by year

Year: 2022 2015 2014 2013 2009 2007 2006 2003 2001 1999 1998 1997 1995 1994 1993 1992 1991 1990 1989 1988 1987 1986 1985 1983 1978 Total
Citations: 1 1 1 3 1 2 2 1 1 1 1 3 4 3 1 2 5 3 1 3 4 2 6 6 1 59
Citation information
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Citations to this article (59)

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Supra-molecular association and polymorphic behaviour in systems containing bile acid salts
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Molecules (Basel, Switzerland) 2007
Supra-molecular Association and Polymorphic Behaviour In Systems Containing Bile Acid Salts
Calabresi M, Andreozzi P, La Mesa C
2007
Role of pH in protection by low sodium against hypoxic injury in isolated perfused rat livers
M Vairetti, P Richelmi, F Bertè, RT Currin, JJ Lemasters, R Imberti
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Bile formation and hepatic plasma membrane composition in guinea-pigs and rats
F Guertin, A Loranger, G Lepage, CC Roy, IM Yousef, N Domingo, F Chanussot, H Lafont, B Tuchweber
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Gastroenterology 1992
Studies on the mechanism of bile salt-independent bile flow impairment in streptozotocin-induced hepatotoxicity
CE Carnovale, MG Roma, JA Monti, EA Garay
Toxicology 1991
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MH Nathanson, JL Boyer
Hepatology 1991
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1991
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Epithelial Secretion of Water and Electrolytes
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1990
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Rat hepatocytes exhibit basolateral Na+/HCO3- cotransport
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Inhibition of bile secretion in the rat by serum ultrafiltrates and fractions from patients with fulminant hepatic failure
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British Journal of Experimental Pathology 1988
Inhibition of Na+/H+ exchange in the rat is associated with decreased ursodeoxycholate hypercholeresis, decreased secretion of unconjugated ursodeoxycholate, and increased ursodeoxycholate glucuronidation
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Primary liver cell cultures grown on gas permeable membrane as source for the collection of primary bile
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In Vitro Cellular & Developmental Biology – Animal 1988
Ursodeoxycholate stimulates Na+-H+ exchange in rat liver basolateral plasma membrane vesicles
RH Moseley, N Ballatori, DJ Smith, JL Boyer
Journal of Clinical Investigation 1987
Cell membrane and transepithelial voltages and resistances in isolated rat hepatocyte couplets
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The Journal of Membrane Biology 1987
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Biochimica et Biophysica Acta (BBA) - Lipids and Lipid Metabolism 1986
Structural and functional integrity of rat liver perfused in backward and forward directions
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Evidence for carrier-mediated chloride/bicarbonate exchange in canalicular rat liver plasma membrane vesicles
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Bicarbonate-stimulated ATPase activity of bovine liver alkaline phosphatase
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The sodium and bicarbonate dependence of bile secretion in the guinea-pig
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Comparative Biochemistry and Physiology Part A: Physiology 1985
Changes of the pattern of biliary bile acids during isolated rat liver perfusion
J Schoelmerich, S Kitamura, K Miyai
Biochemical and Biophysical Research Communications 1983
Current Topics in Membranes and Transport
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No increase of biliary permeability in ethinylestradiol-treated rats
H Jaeschke, H Krell, E Pfaff
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Inhibition of liver surface membrane Na+, K+-adenosine triphosphatase, Mg+2-adenosine triphosphatase and 5′- nucleotidase activities by protoporphyrin
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(Na,K)-ATPase-mediated cation pumping in cultured rat hepatocytes. Rapid modulation by alanine and taurocholate transport and characterization of its relationship to intracellular sodium concentration
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Physiology of Membrane Disorders
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