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Am J Physiol Gastrointest Liver Physiol 289: G508-G520, 2005. First published April 14, 2005; doi:10.1152/ajpgi.00436.2004
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MUCOSAL BIOLOGY

Modulation of electroneutral Na transport in sheep rumen epithelium by luminal ammonia

Khalid Abdoun,1,* Friederike Stumpff,2,* Katarina Wolf,2 and Holger Martens2

1Department of Physiology, Faculty of Veterinary Sciences, University of Khartoum, Sudan; and 2Department of Veterinary Physiology, Free University of Berlin, Berlin, Germany

Submitted 24 September 2004 ; accepted in final form 6 April 2005

Ammonia is an abundant fermentation product in the forestomachs of ruminants and the intestine of other species. Uptake as NH3 or NH4+ should modulate cytosolic pH and sodium-proton exchange via Na+/H+ exchanger (NHE). Transport rates of Na+, NH4+, and NH3 across the isolated rumen epithelium were studied at various luminal ammonia concentrations and pH values using the Ussing chamber method. The patch-clamp technique was used to identify an uptake route for NH4+. The data show that luminal ammonia inhibits electroneutral Na transport at pH 7.4 and abolishes it at 30 mM (P < 0.05). In contrast, at pH 6.4, ammonia stimulates Na transport (P < 0.05). Flux data reveal that at pH 6.4, ~70% of ammonia is absorbed in the form of NH4+, whereas at pH 7.4, uptake of NH3 exceeds that of NH4+ by a factor of approximately four. The patch-clamp data show a quinidine-sensitive permeability for NH4+ and K+ but not Na+. Conductance was 135 ± 12 pS in symmetrical NH4Cl solution (130 mM). Permeability was modulated by the concentration of permeant ions, with PK > PNH4 at high and PNH4 > PK at lower external concentrations. Joint application of both ions led to anomalous mole fraction effects. In conclusion, the luminal pH determines the predominant form of ammonia absorption from the rumen and the effect of ammonia on electroneutral Na transport. Protons that enter the cytosol through potassium channels in the form of NH4+ stimulate and nonionic diffusion of NH3 blocks NHE, thus contributing to sodium transport and regulation of pH.

rumen; ammonia; sodium transport; sodium-hydrogen exchanger; potassium channel



Address for reprint requests and other correspondence: H. Martens, Dept. of Veterinary-Physiology, Free Univ. of Berlin, Oertzenweg 19b, 14163 Berlin (e-mail: martens{at}vetmed.fu-berlin.de)




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Exp PhysiolHome page
U. Lodemann and H. Martens
Effects of diet and osmotic pressure on Na+ transport and tissue conductance of sheep isolated rumen epithelium
Exp Physiol, May 1, 2006; 91(3): 539 - 550.
[Abstract] [Full Text] [PDF]




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