Literature DB >> 11113089

Perfused rat intrahepatic bile ducts secrete and absorb water, solute, and ions.

A I Masyuk1, A Y Gong, S Kip, M J Burke, N F LaRusso.   

Abstract

BACKGROUND & AIMS: We report a novel approach to study biliary water, bile acid, and HCO(3)(-) transport: the microperfusion of intrahepatic bile duct units (IBDUs) isolated from normal rat liver.
METHODS: To study water transport, IBDUs were perfused in vitro with a membrane-impermeant fluorescent volume marker, fluorescein sulfonate; net water movement (J(v)) and osmotic water permeability (P(f)) were then calculated. To study solute transport, IBDUs were perfused with taurocholic acid (TCA) and bile acid uptake was calculated from the concentrations of TCA in the perfused and collected solutions. To study ion transport, IBDUs were perfused with the cell-impermeant pH-sensitive dye BCECF dextran; luminal pH was determined from fluorescence excitation ratios.
RESULTS: When inward (secretory) or outward (absorptive) osmotic gradients were established across IBDUs, water movement was observed from bath to lumen (i.e., secretion) and from lumen to bath (i.e., absorption). The perfused IBDUs absorbed TCA in a saturable, sodium-dependent manner; in addition, TCA absorption was blocked in a dose-dependent fashion by S0960, a specific inhibitor of the Na(+)/bile acid cotransporter. Addition of forskolin to HCO(3)(-)-containing (but not HCO(3)(-)-free) bath buffer resulted in lumen alkalinization reflecting HCO(3)(-) transport into the lumen of perfused IBDUs.
CONCLUSIONS: The results provide direct functional evidence that intrahepatic bile ducts both secrete and absorb water in response to osmotic gradients, actively absorb bile acid, and transport HCO(3)(-).

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Year:  2000        PMID: 11113089     DOI: 10.1053/gast.2000.20248

Source DB:  PubMed          Journal:  Gastroenterology        ISSN: 0016-5085            Impact factor:   22.682


  14 in total

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Review 2.  Enterohepatic circulation: physiological, pharmacokinetic and clinical implications.

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3.  Cholangiocyte cilia express TRPV4 and detect changes in luminal tonicity inducing bicarbonate secretion.

Authors:  Sergio A Gradilone; Anatoliy I Masyuk; Patrick L Splinter; Jesus M Banales; Bing Q Huang; Pamela S Tietz; Tatyana V Masyuk; Nicholas F Larusso
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4.  Cholangiocyte primary cilia are chemosensory organelles that detect biliary nucleotides via P2Y12 purinergic receptors.

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Review 5.  Physiology of cholangiocytes.

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9.  Differential expression of cholangiocyte and ileal bile acid transporters following bile acid supplementation and depletion.

Authors:  N-Sertac Kip; Konstantinos-N Lazaridis; Anatoliy-I Masyuk; Patrick-L Splinter; Robert-C Huebert; Nicholas-F LaRusso
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10.  Cyclic AMP regulates bicarbonate secretion in cholangiocytes through release of ATP into bile.

Authors:  Noritaka Minagawa; Jun Nagata; Kazunori Shibao; Anatoliy I Masyuk; Dawidson A Gomes; Michele A Rodrigues; Gene Lesage; Yasutada Akiba; Jonathan D Kaunitz; Barbara E Ehrlich; Nicholas F Larusso; Michael H Nathanson
Journal:  Gastroenterology       Date:  2007-08-14       Impact factor: 22.682

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