Na+ transport by mammalian stomach.
- 28 February 1978
- journal article
- research article
- Published by American Physiological Society in American Journal of Physiology-Endocrinology and Metabolism
- Vol. 234 (3) , E228-E235
- https://doi.org/10.1152/ajpendo.1978.234.3.e228
Abstract
Gastric mucosas from newborn pigs (0--20 days) and rabbits (0--20 days) were used for in vitro investigation of active Na+ transport during resting (no HCl secretion) conditions. As measured with 22Na+, these tissues actively absorb Na+ from the mucosal-to serosal (m-t-s) bathing solution during both open-circuit and short-circuit current (Is) conditions. In the nonsecreting state, net Na+ transport accounts for 40--60% of Isc. The remaining current is provided by net s-to-m flux of Cl-. Amiloride (2-5 X 10(-5) M) in the mucosal solution abolishes this active Na+ transport by inhibiting m-to-s fluxes of Na+ (JNams). In vivo-in vitro experiments showed that active Na+ transport is a normal function of the resting mammalian stomach. Decreasing pH of the mucosal solution below pH 5 reversibly causes decreased current-generating capability of the tissue. Pretreatment of the tissue with amiloride abolishes this pH effect. The implication is that the low pH affects the Na+-entry step into cells. "Titration curves" of current vs. pH had an apparent pK approximately 4.0. Ouabain and K+-free solutions both cause decreases in active Na+ and Cl- current. Calculations indicate that a shunt may account for only a small (less than 30%) percentage of total transepithelial conductance.This publication has 19 references indexed in Scilit:
- Route of Passive Ion Permeation in EpitheliaNature New Biology, 1972
- The mechanism of cation permeation in rabbit gallbladderThe Journal of Membrane Biology, 1971
- Effects of Monovalent Cations on the Sodium-Alanine Interaction in Rabbit IleumThe Journal of general physiology, 1970
- A Model for the Long Time-Constant Transient Voltage Response to Current in Epithelial TissuesBiophysical Journal, 1970
- Biological Membranes: The Physical Basis of Ion and Nonelectrolyte SelectivityAnnual Review of Physiology, 1969
- Three components of Cl flux across isolated bullfrog gastric mucosaAmerican Journal of Physiology-Legacy Content, 1969
- Effects of pH and polyvalent cations on the selective permeability of gall-bladder epithelium to monovalent ionsBiochimica et Biophysica Acta (BBA) - Biomembranes, 1968
- Reactor Materials and Radiation DamageNature, 1962
- Movement of water, sodium, chloride and hydrogen ions across the resting stomachAmerican Journal of Physiology-Legacy Content, 1959
- The Distinction by Means of Tracers Between Active Transport and DiffusionActa Physiologica Scandinavica, 1949