The effect of ketone bodies on renal ammoniogenesis
Open Access
- 1 September 1971
- journal article
- Published by American Society for Clinical Investigation in Journal of Clinical Investigation
- Vol. 50 (9) , 1781-1791
- https://doi.org/10.1172/jci106668
Abstract
Infusion of ketone bodies to ammonium chloride-loaded acidotic dogs was found to induce significant reduction in urinary excretion of ammonia. This effect could not be attributed to urinary pH variations. Total ammonia production by the left kidney was measured in 25 animals infused during 90 min with the sodium salt of D,L-beta-hydroxybutyric acid adjusted to pH 6.0 or 4.2. Ketonemia averaged 4.5 mM/liter. In all experiments the ammonia content of both urine and renal venous blood fell markedly so that ammoniogenesis was depressed by 60% or more within 60 min after the onset of infusion. Administration of equimolar quantities of sodium acetoacetate adjusted to pH 6.0 resulted in a 50% decrease in renal ammonia production. Infusion of ketone bodies adjusted to pH 6.0 is usually accompanied by a small increase in extracellular bicarbonate (3.7 mM/liter). However infusion of D,L-sodium lactate or sodium bicarbonate in amounts sufficient to induce a similar rise in plasma bicarbonate resulted in only a slight decrement in ammonia production (15%). The continuous infusion of 5% mannitol alone during 90-150 min failed to influence renal ammoniogenesis. Infusion of pure sodium-free beta-hydroxybutyric acid prepared by ion exchange (pH 2.2) resulted in a 50% decrease in renal ammoniogenesis in spite of the fact that both urinary pH and plasma bicarbonate fell significantly. During all experiments where ketones were infused, the renal extraction of glutamine became negligible as the renal glutamine arteriovenous difference was abolished. Renal hemodynamics did not vary significantly. Infusion of beta-hydroxybutyrate into the left renal artery resulted in a rapid decrease in ammoniogenesis by the perfused kidney. The present study indicates that ketone bodies exert their inhibitory influence within the renal tubular cell. Since their effect is independent of urinary or systemic acid-base changes, it is suggested that they depress renal ammoniogenesis by preventing the transformation of glutamine and glutamate into alpha-ketoglutarate in the mitochondria of the renal tubular cell.Keywords
This publication has 44 references indexed in Scilit:
- Renal Glutamate Metabolism in Acute Metabolic AcidosisNephron, 1969
- Renal gluconeogenesis in acidosis, alkalosis, and potassium deficiency: its possible role in regulation of renal ammonia production.Journal of Clinical Investigation, 1966
- Inhibition of citrate formation by long-chain acyl thioesters of coenzyme A as a possible control mechanism in fatty acid bioxynthesisBiochimica et Biophysica Acta, 1963
- Inhibition of citrate-synthase by palmityl-coenzyme ABiochemical and Biophysical Research Communications, 1963
- Regulation of phosphofructokinase activity by citrate in normal and diabetic muscleBiochemical and Biophysical Research Communications, 1963
- Increase in liver acetyl — Coenzyme a during ketosisBiochemical and Biophysical Research Communications, 1963
- Quantitative bestimmung von L(+)-Milchsäure mit MilchsäuredehydrogenaseBiochimica et Biophysica Acta, 1956
- The Effects of Alkalosis upon Ketone Body Production and Carbohydrate Metabolism in ManJournal of Clinical Investigation, 1954
- The enzymic oxidation of d- and l-β-hydroxybutyrateBiochimica et Biophysica Acta, 1953
- THE RENAL CLEARANCES OF SUBSTITUTED HIPPURIC ACID DERIVATIVES AND OTHER AROMATIC ACIDS IN DOG AND MAN 1Journal of Clinical Investigation, 1945