Ursodeoxycholate and tauroursodeoxycholate inhibit cholangiocyte growth and secretion of BDL rats through activation of PKC alpha
Open Access
- 1 May 2002
- journal article
- Published by Wolters Kluwer Health in Hepatology
- Vol. 35 (5) , 1041-1052
- https://doi.org/10.1053/jhep.2002.32712
Abstract
Accumulating bile acids (BA) trigger cholangiocyte proliferation in chronic cholestasis. The aim of this study was to determine if ursodeoxycholate (UDCA) or tauroursodeoxycholate (TUDCA) chronic feeding prevents the increased cholangiocyte growth and secretion in bile duct-ligated (BDL) rats, if UDCA and TUDCA effects are associated with increased cholangiocyte apoptosis, and to determine if this inhibition is dependent on increased intracellular Ca2+ ([Ca2+]i) and activation of protein kinase C (PKC) alpha. Immediately after BDL, rats were fed UDCA or TUDCA (both 275 μmol/d) for 1 week. We determined the number of bile ducts in liver sections, cholangiocyte proliferation (by measurement of H3 histone and proliferating cellular nuclear antigen in isolated cholangiocytes), and ductal secretion. In purified cholangiocytes from 1-week BDL rats, we evaluated if UDCA and TUDCA directly inhibit cholangiocyte proliferation and secretin-stimulated adenosine 3', 5'-monophosphate levels. We determined if UDCA and TUDCA activate PKC, increase [Ca2+]i, and alter the apical BA transporter (ABAT) expression in cholangiocytes. UDCA and TUDCA inhibited in vivo the cholangiocyte proliferation, secretion, and ABAT expression. In vitro UDCA and TUDCA inhibition of cholangiocyte growth and secretion required increased [Ca2+]i and PKC alpha. In conclusion, activation of Ca2+-dependent PKC alpha is required for UDCA and TUDCA inhibition of cholangiocyte growth and secretion. Reduced cholangiocyte ABAT may decrease endogenous BA stimulation of cholangiocyte growth and secretion.Keywords
Funding Information
- Scott & White Hospital and The Texas A&M University System to G.L. and G.A.
- NIH to G.L. (DK 54208)
- NIH to G.A. (DK 58411)
- CNR Italian to M.A. (9806210866-006)
This publication has 36 references indexed in Scilit:
- Gastrin inhibits cholangiocyte growth in bile duct-ligated rats by interaction with cholecystokinin-B/gastrin receptors via d -myo-inositol 1,4,5-triphosphate-, Ca2+-, and protein kinase C α-dependent mechanismsHepatology, 2000
- Cholinergic system modulates growth, apoptosis, and secretion of cholangiocytes from bile duct–ligated ratsGastroenterology, 1999
- Acute Carbon Tetrachloride Feeding Selectively Damages Large, But Not Small, Cholangiocytes From Normal Rat LiverHepatology, 1999
- Bile acid feeding induces cholangiocyte proliferation and secretion: Evidence for bile acid–regulated ductal secretionGastroenterology, 1999
- Rat cholangiocytes absorb bile acids at their apical domain via the ileal sodium-dependent bile acid transporter.Journal of Clinical Investigation, 1997
- Functional expression of the apical Na+-dependent bile acid transporter in large but not small rat cholangiocytes.Gastroenterology, 1997
- Role and mechanisms of action of acetylcholine in the regulation of rat cholangiocyte secretory functions.Journal of Clinical Investigation, 1997
- Regrowth of the rat biliary tree after 70% partial hepatectomy is coupled to increased secretin-induced ductal secretionGastroenterology, 1996
- Ursodiol for the Long-Term Treatment of Primary Biliary CirrhosisNew England Journal of Medicine, 1994
- Biliary physiology in rats with bile ductular cell hyperplasia. Evidence for a secretory function of proliferated bile ductules.Journal of Clinical Investigation, 1988