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PMID: 1660261 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Regulation of cell volume in the perfused rat liver by hormones.

The Biochemical journal ·Vol. 280 ( Pt 1) ·1991-11-15 ·Pages 105-9

vom Dahl S, Hallbrucker C, Lang F, Häussinger D

Abstract

The effect of hormones on cell volume was studied in isolated perfused rat liver by assessing the intracellular water space as the difference between a [3H]inulin- and a [14C]urea-accessible space. The intracellular water space (control value 559 +/- 7 microliters/g of liver; n = 88) increased on addition of insulin (35 nM) or phenylephrine (5 microM) by 12 or 8% respectively, whereas it decreased with cyclic AMP (cAMP; 50 microM), glucagon (100 nM) or adenosine (50 microM) by 9, 13 or 6% respectively. Both insulin and glucagon exerted half-maximal effects on cell volume and cellular K+ balance at hormone concentrations found physiologically in the portal vein. Adenosine-induced cell shrinkage was explained by a net K+ release from the liver. Phenylephrine (5 microM) led to cell swelling by about 8%, which was additive to insulin-induced swelling. Extracellular ATP (20 microM) induced cell shrinkage by about 6%; this was additive to adenosine-induced shrinkage. Vasopressin (15 nM) did not appreciably change cell volume, but induced marked cell shrinkage when glucagon or cAMP was present. Insulin- and phenylephrine-induced cell swelling was counteracted by cAMP. Hormone-induced changes of intracellular water space could sufficiently explain accompanying liver mass changes induced by glucagon, cAMP, adenosine or vasopressin, but not those by phenylephrine and extracellular ATP. The data show that liver cell volume is subject to hormonal regulation, in part owing to modification of cellular K+ balance. Glucagon- and insulin-induced cell volume changes occur already in the presence of physiological hormone concentrations. The effects of Ca2(+)-mobilizing hormones on cell volume are not uniform. In view of the recently established role of cell volume changes in modulating liver cell function, the present findings open a new perspective on the mechanisms of hormone action in liver, underlining our previous hypothesis that cell volume changes may represent a 'second messenger' of hormone action.

MeSH Terms
Adenosine/pharmacology Adenosine Triphosphate/pharmacology Animals Cyclic AMP/pharmacology Glucagon/pharmacology Hormones/pharmacology Insulin/pharmacology Intracellular Fluid/drug effects,physiology Inulin Kinetics Liver/drug effects,physiology Male Perfusion Phenylephrine/pharmacology Potassium/metabolism Rats Rats, Inbred Strains Urea Vasopressins/pharmacology
Chemicals
Hormones Insulin Vasopressins Phenylephrine Adenosine Triphosphate Urea Inulin Glucagon Cyclic AMP Adenosine Potassium
Authors & Affiliations
4 authors, click to expand affiliations / ORCID
vom Dahl S
Medizinische Universitätsklinik, Freiburg, Federal Republic of Germany.
Hallbrucker C
Lang F
Häussinger D
References (25)
25 references, click to expand
  1. A linear method for determining liver sinusoidal and extravascular volumes.
    Am J Physiol. 1963 Apr;204:626-40 PMID: 13949263
  2. The use of perfusion of liver and other organs for the study of microsomal electron-transport and cytochrome P-450 systems.
    Methods Enzymol. 1978;52:48-59 PMID: 672651
  3. Control of hepatic proteolysis by amino acids. The role of cell volume.
    Eur J Biochem. 1991 May 8;197(3):717-24 PMID: 2029901
  4. A non-invasive technique for cell volume determination in perfused rat liver.
    Biol Chem Hoppe Seyler. 1991 Jun;372(6):411-8 PMID: 1910579
  5. Regulation of liver cell volume and proteolysis by glucagon and insulin.
    Biochem J. 1991 Sep 15;278 ( Pt 3):771-7 PMID: 1898364
  6. Modification of liver cell volume by insulin and glucagon.
    Pflugers Arch. 1991 Jun;418(5):519-21 PMID: 1891339
  7. Inhibition of hepatic proteolysis by insulin. Role of hormone-induced alterations of the cellular K+ balance.
    Eur J Biochem. 1991 Jul 15;199(2):467-74 PMID: 2070798
  8. Amino acid-dependent increase in hepatic system N activity is linked to cell swelling.
    J Biol Chem. 1991 Apr 25;266(12):7376-81 PMID: 2019573
  9. Regulation of the plasma membrane potential in hepatocytes--mechanism and physiological significance.
    Biochim Biophys Acta. 1990 Oct 8;1031(3):383-97 PMID: 1977473
  10. Vasopressin, insulin and peroxide(s) of vanadate (pervanadate) influence Na+ transport mediated by (Na+, K+)ATPase or Na+/H+ exchanger of rat liver plasma membrane vesicles.
    Eur J Biochem. 1990 Oct 24;193(2):541-9 PMID: 2171938
  11. Cell swelling inhibits proteolysis in perfused rat liver.
    Biochem J. 1990 Nov 15;272(1):239-42 PMID: 2264828
  12. Stimulation of thromboxane release by extracellular UTP and ATP from perfused rat liver. Role of icosanoids in mediating the nucleotide responses.
    Eur J Biochem. 1988 Dec 1;178(1):249-56 PMID: 2849542
  13. Effects of ATP and adenosine addition on activity of oxoglutarate dehydrogenase and the concentration of cytoplasmic free Ca2+ in rat hepatocytes.
    Eur J Biochem. 1985 Sep 16;151(3):567-72 PMID: 4029149
  14. Water, K+, H+, lactate and glucose fluxes during cell volume regulation in perfused rat liver.
    Pflugers Arch. 1989 Jan;413(3):209-16 PMID: 2717371
  15. Extracellular ATP activates polyphosphoinositide breakdown and Ca2+ mobilization in Ehrlich ascites tumor cells.
    Arch Biochem Biophys. 1986 Feb 15;245(1):84-95 PMID: 3004360
  16. Alteration of hepatic tissue spaces by platelet-activating factor and phenylephrine.
    Hepatology. 1989 Feb;9(2):278-84 PMID: 2643546
  17. Fluid phase endocytosis by cultured rat hepatocytes and perfused rat liver: implications for plasma membrane turnover and vesicular trafficking of fluid phase markers.
    Proc Natl Acad Sci U S A. 1986 Dec;83(24):9488-92 PMID: 3467318
  18. Interactions between glutamine metabolism and cell-volume regulation in perfused rat liver.
    Eur J Biochem. 1990 Mar 30;188(3):689-95 PMID: 2331991
  19. Swelling of rat hepatocytes stimulates glycogen synthesis.
    J Biol Chem. 1990 Jan 15;265(2):955-9 PMID: 2295626
  20. Ionic mechanisms of cell volume regulation in leukocytes.
    Annu Rev Physiol. 1990;52:399-414 PMID: 2184762
  21. Stimulation of release of prostaglandin D2 and thromboxane B2 from perfused rat liver by extracellular adenosine.
    Biochem J. 1990 Aug 15;270(1):39-44 PMID: 2396991
  22. Insulin and glucagon stimulation of (Na+-K+)-ATPase transport activity in isolated rat hepatocytes.
    J Biol Chem. 1981 Jul 25;256(14):7449-53 PMID: 6265450
  23. Regulation of peripheral insulin/glucagon levels by rat liver.
    Eur J Biochem. 1984 Jun 15;141(3):645-50 PMID: 6378634
  24. Phosphatidylinositol breakdown induced by vasopressin and epinephrine in hepatocytes is calcium-dependent.
    J Biol Chem. 1982 Oct 10;257(19):11323-31 PMID: 6811579
  25. Cell volume is a major determinant of proteolysis control in liver.
    FEBS Lett. 1991 May 20;283(1):70-2 PMID: 1645299
Article Info
Journal
The Biochemical journal
Abbr.
Biochem J
ISSN
0264-6021
Published
1991-11-15
Pages
105-9
Language
English
Region
England
NLM ID
2984726R
PMCID
PMC1130606
Subset
IM
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