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Ion Transport in Isolated Rabbit Ileum

The Journal of General Physiology · 1964 · Vol. 47(6) · pp. 1043–1059
Stanley G. SchultzRalph Zalusky

Abstract

The addition of actively transported sugars to the solution bathing the mucosal surface of an in vitro preparation of distal rabbit ileum results in a rapid increase in the transmural potential difference, the short-circuit current, and the rate of active Na transport from mucosa to serosa. These effects are dependent upon the active transport of the sugar per se and are independent of the metabolic fate of the transported sugar. Furthermore, they are inhibited both by low concentrations of phlorizin in the mucosal solution and by low concentrations of ouabain in the serosal solution. The increase in the short-circuit current, DeltaI(sc), requires the presence of Na in the perfusion medium and its magnitude is a linear function of the Na concentration. On the other hand, DeltaI(sc) is a saturable function of the mucosal sugar concentration which is consistent with Michaelis-Menten kinetics suggesting that the increase in active Na transport is stoichiometrically related to the rate of active sugar transport. An interpretation of these findings in terms of a hypothetical model for intestinal Na and sugar transport is presented.

Ion Transport and Channel RegulationElectrolyte and hormonal disordersIon channel regulation and functionPhlorizinOuabainChemistrySugarBiophysicsIleumKineticsHexoseIn vitroIon transporter

MeSH terms

AnimalsBiological TransportBiological Transport, ActiveIleumIntestinal MucosaIonsKineticsMetabolismOuabainPharmacologyPhlorhizinRabbitsResearchSodiumTemperature

Funding

  • U.S. Department of Defense
  • U.S. Air Force
Citations
518
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References
Ion Transport in Isolated Rabbit Ileum
The Journal of General Physiology · 1964 · 561 citations
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