Abstract
Chloride outflux and influx has been studied in single isolated muscle fibers from the giant barnacle under constant internal composition by means of a dialysis perfusion technique. Membrane potential was continually recorded. The chloride outfluxes and influxes were 143 and 144 pmoles/cm(2)-sec (mean resting potential: 58 mv, temperature: 22 degrees -24 degrees C) with internal and external chloride concentrations of 30 and 541 mM, respectively. The chloride conductance calculated from tracer measurements using constant field assumptions is about fourfold greater than that calculated from published electrical data. Replacing 97% of the external chloride ions by propionate reduces the chloride efflux by 51%. Nitrate ions applied either to the internal or external surface of the membrane slows the chloride efflux. The external pH dependence of the chloride efflux follows the external pH dependence of the membrane conductance, in the range pH 3.9-4.7, increasing with decreasing pH. In the range pH 5-9, the chloride efflux increased with increasing pH, in a manner similar to that observed in frog muscle fibers. The titration curve for internal pH changes in the range 4.0-7.0 was quantitatively much different from that for external pH change, indicating significant asymmetry in the internal and external pH dependence of the chloride efflux.
MeSH Terms
Animals
Cardiac Glycosides/pharmacology
Cell Membrane
Cell Membrane Permeability/drug effects
Chlorides/administration & dosage,metabolism
Dialysis
Hydrogen-Ion Concentration
In Vitro Techniques
Membrane Potentials
Methods
Muscles/metabolism,physiology
Nitrates/pharmacology
Seawater
Sodium Chloride
Sodium Isotopes
Temperature
Thoracica
Chemicals
Cardiac Glycosides
Chlorides
Nitrates
Sodium Isotopes
Sodium Chloride
Authors & Affiliations
1 authors, click to expand affiliations / ORCID
DiPolo R
References (16)
16 references, click to expand
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