Abstract
The addition of ammonium ions to the external medium results in an inhibition of the sodium influx and net uptake in Carassius auratus, while intraperitoneal injection of ammonium produces the opposite effect. The simultaneous chloride balance is not significantly affected by these treatments. The addition of bicarbonate ions to the external medium results in a reduction of the influx and net flux of chloride, while injection of bicarbonate produces the opposite effect. The simultaneous sodium balance is not significantly altered. The effects of the external additions are reversible after elimination of the excess ammonium or bicarbonate ions by rinsing. Inhibition of carbonic anhydrase in the gill by injection of acetazoleamide produces a simultaneous inhibition of both sodium and chloride exchanges. These results confirm the hypothesis of an exchange of sodium for ammonium, and of bicarbonate for chloride across the gill. A tentative schematic representation of the ionic absorption mechanisms in the branchial cell of the fresh-water teleosts is given. Similarities with other biological membranes and especially with the renal tubule are pointed out.
Keywords
ACETAZOLAMIDE
AMMONIA
BICARBONATES
CARBONIC ANHYDRASE INHIBITORS
CHLORIDES
EXPERIMENTAL LAB STUDY
FISHES
IONS
METABOLISM
PHARMACOLOGY
SODIUM
MeSH Terms
Acetazolamide
Ammonia
Animals
Bicarbonates
Biological Transport
Carbonic Anhydrase Inhibitors
Chlorides
Fishes
Gills
Goldfish
Ion Exchange
Ions
Metabolism
Pharmacology
Research
Sodium
Chemicals
Bicarbonates
Carbonic Anhydrase Inhibitors
Chlorides
Ions
Ammonia
Sodium
Acetazolamide
Authors & Affiliations
2 authors, click to expand affiliations / ORCID
MAETZ J
GARCIAROMEU F
References (11)
11 references, click to expand
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