Abstract
We and others have published data that indicate that the role played by microtubules and microfilaments in biliary secretion is as follows: microtubules play a part in secretion and microfilaments play a part in the canalicular contraction. To further study the role of the cytoskeleton in canalicular contraction, we observed the contraction of bile canaliculi (BC) induced by vasopressin (VP) in cultured differentiated hepatocytes treated with several agents that selectively rearrange the cytoskeleton. The hepatocytes obtained from 14-day-old rats were cultured for 48 hours. The BC formed between the cells were dilated and closely sealed by junctional complexes. Ruthenium red stain showed that the junctional complexes of the BC were tightly sealed. Cytoskeletal changes were observed by double-labeled fluorescence microscopy. A spontaneous contraction of the BC was rarely seen during a 60-minute observation period in controls. When the hepatocytes were incubated with VP (10(-8) M), the canalicular contraction began at 30 minutes, gradually progressed, and was complete by 60 minutes. The contraction was reversed after 60 minutes of incubation in VP-free medium. In cytochalasin B-treated hepatocytes, actin appeared to form pools around the dilated BC, and the canalicular contraction after VP was rarely observed. In colchicine-treated hepatocytes, the microtubules were depolymerized. Although the BC appeared unaffected by colchicine alone, the canalicular contraction induced by VP was markedly decreased. beta-lumicolchicine had no effect on the cytoskeleton or on the canalicular contraction. Mg2(+)-ATPase histochemistry revealed that the BC that did not contract after VP contained little Mg2(+)-ATPase reaction product. When the BC contracted, diverticula came off to form diacytotic vesicles, as indicated by the presence of the BC marker enzyme reaction product within the vesicles. Colchicine treatment blocked the diacytotic process. This prevented the contraction stimulated by VP, because all of the routes of escape of the canalicular contents were blocked off, including diacytosis. In conclusion, the integrity of actin filaments and Mg2(+)-ATPase is necessary for VP-induced contraction, and the integrity of microtubules is essential for regurgitation of BC content (diacytosis).
MeSH Terms
Adenosine Triphosphatases/metabolism
Animals
Bile Canaliculi/enzymology,physiology,ultrastructure
Bile Ducts, Intrahepatic/physiology
Cell Differentiation
Cells, Cultured
Cytoskeleton/enzymology,physiology,ultrastructure
Histocytochemistry
Liver/cytology,physiology,ultrastructure
Magnesium/pharmacology
Male
Microscopy, Electron
Microscopy, Fluorescence
Rats
Rats, Inbred Strains
Ruthenium Red
Vasoconstriction/physiology
Vasopressins/pharmacology
Chemicals
Vasopressins
Ruthenium Red
Adenosine Triphosphatases
Magnesium
Authors & Affiliations
2 authors, click to expand affiliations / ORCID
Kawahara H
Department of Pathology, University of Ottawa, Canada.
French S W
References (19)
19 references, click to expand
-
Histochemistry of hepatic phosphatases of a physiologic pH; with special reference to the demonstration of bile canaliculi.
Am J Clin Pathol. 1957 Jan;27(1):13-23
PMID: 13410831
-
Microfilament dysfunction as a possible cause of intrahepatic cholestasis.
Gastroenterology. 1975 Jul;69(1):48-58
PMID: 1150034
-
Current problems in diagnosis of biliary disease and cholestasis.
Semin Liver Dis. 1986 Aug;6(3):233-45
PMID: 3535088
-
The fate of polymeric and secretory immunoglobulin A after retrograde infusion into the common bile duct in rats.
Hepatology. 1984 Nov-Dec;4(6):1173-83
PMID: 6500510
-
Isolated rat hepatocyte couplets in short-term culture: structural characteristics and plasma membrane reorganization.
Hepatology. 1987 Mar-Apr;7(2):216-23
PMID: 3557300
-
Colchicine effect on bile canalicular motility: long-term study using isolated cultured hepatocytes and time-lapse cinephotomicrography.
Liver. 1985 Apr;5(2):101-7
PMID: 3999933
-
Effects of chlorpromazine and low calcium on the cytoskeleton and the secretory function of hepatocytes in vitro.
J Hepatol. 1990 Jan;10(1):8-16
PMID: 2407773
-
Hepatocytes from newborn and weanling rats in monolayer culture: isolation by perfusion, fibronectin-mediated adhesion, spreading, and functional activities.
In Vitro. 1980 Aug;16(8):722-30
PMID: 6158476
-
Biochemical separation of Na+,K+-ATPase from a "purified" light density, "canalicular"-enriched plasma membrane fraction from rat liver.
Hepatology. 1983 Jan-Feb;3(1):18-28
PMID: 6130040
-
Intrahepatic cholestasis as a canalicular motility disorder. Evidence using cytochalasin.
Lab Invest. 1983 Feb;48(2):205-11
PMID: 6681643
-
Effects of cytochalasin D and colchicine on the uptake, translocation, and biliary secretion of horseradish peroxidase and [14C]sodium taurocholate in the rat.
Gastroenterology. 1983 Aug;85(2):385-94
PMID: 6683208
-
A study of bile canalicular contractions in isolated hepatocytes.
Hepatology. 1982 Nov-Dec;2(6):763-8
PMID: 7141386
-
Increased visualization of microtubules by an improved fixation procedure.
J Histochem Cytochem. 1977 Mar;25(3):175-87
PMID: 402414
-
Secretion of lipoprotein-X by perfused livers of rats with cholestasis.
Proc Natl Acad Sci U S A. 1978 Jul;75(7):3459-63
PMID: 277947
-
Adult rat hepatocytes in primary monolayer culture. Ultrastructural characteristics of intercellular contacts and cell membrane differentiations.
J Cell Biol. 1977 Sep;74(3):858-77
PMID: 903373
-
A study on the permeability barriers between Disse's space and the bile canaliculus.
J Ultrastruct Res. 1969 Oct;11:1-71
PMID: 4187928
-
Functional polarity of the rat hepatocyte surface membrane. Isolation and characterization of plasma-membrane subfractions from the blood-sinusoidal, bile-Canalicular and contiguous surfaces of the hepatocyte.
Biochem J. 1975 Feb;146(2):375-88
PMID: 125584
-
Electron microscopic cytochemical characterization of bile canaliculi and bile ducts in vitro.
Virchows Arch B Cell Pathol. 1975;18(2):109-18
PMID: 124997
-
Effect of agents which rearrange the cytoskeleton in vitro on the structure and function of hepatocytic canaliculi.
Lab Invest. 1989 May;60(5):692-704
PMID: 2654475