Abstract
The effect of alpha-adrenergic agonists on Ca2+ fluxes was examined in the perfused rat liver by using a combination of Ca2+-electrode and 45Ca2+-uptake techniques. We showed that net Ca2+ fluxes can be described by the activities of separate Ca2+-uptake and Ca2+-efflux components, and that alpha-adrenergic agonists modulate the activity of both components in a time-dependent manner. Under resting conditions, Ca2+-uptake and -efflux activities are balanced, resulting in Ca2+ cycling across the plasma membrane. The alpha-adrenergic agonists vasopressin and angiotensin, but not glucagon, stimulate the rate of both Ca2+ efflux and Ca2+ uptake. During the first 2-3 min of alpha-agonist administration the effect on the efflux component is the greater, the net effect being efflux of Ca2+ from the cell. After 3-4 min of phenylephrine treatment, net Ca2+ movements are essentially complete, however, the rate of Ca2+ cycling is significantly increased. After removal of the alpha-agonist a large stimulation of the rate of Ca2+ uptake leads to the net accumulation of Ca2+ by the cell. The potential role of these Ca2+ flux changes in the expression of alpha-adrenergic-agonist-mediated effects is discussed.
MeSH Terms
Angiotensin II/pharmacology
Animals
Calcium/metabolism
Cell Membrane/drug effects,metabolism
Glucagon/pharmacology
Liver/drug effects,metabolism
Male
Perfusion
Phenylephrine/pharmacology
Rats
Rats, Inbred Strains
Vasopressins/pharmacology
Chemicals
Vasopressins
Angiotensin II
Phenylephrine
Glucagon
Calcium
Authors & Affiliations
3 authors, click to expand affiliations / ORCID
Reinhart P H
Taylor W M
Bygrave F L
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