Regulation of renal phosphate transport by acute and chronic metabolic acidosis in the rat. Metabolic acidosis results in impaired renal tubular phosphate reabsorption and proximal tubular apical brush border membrane (BBM) sodium gradient-dependent phosphate transport (Na/Pi cotransport) activity. In the present study we investigated the cellular mechanisms responsible for decreased Na/Pi cotransport activity following six hours to 10days of metabolic acidosis induced by ingestion of NH4Cl. Urinary Pi excretion was significantly increased and BBM Na/Pi cotransport activity was progressively and significantly decreased by 18% at six hours, 24% at 12hours, 32% at 24hours, and 61% after 10days of metabolic acidosis. The progressive and time-d...
Abstract. Renal tubular bicarbonate r absorption and acidification were evaluated inphosphate deplet...
Localization of parathyroid-hormone-independent sodium bicarbonate inhibition of tubular phosphate r...
Nicotinamide is an important regulator of Pi homeostasis after conversion into NAD+/NADH. In this wo...
During metabolic acidosis (MA), urinary phosphate excretion increases and contributes to acid remova...
AbstractThe effect of ischemia induced acute renal failure (ARF) on the transport of phosphate (Pi) ...
Recently, me cloned a cDNA (NaSi-1) localized to rat renal proximal tubules and encoding the brush-b...
Effects of phosphate intake on distribution of type II Na/Pi cotransporter mRNA in rat kidney.Backgr...
Recently, we cloned a cDNA (NaS(i)-1) localized to rat renal proximal tubules and encoding the brush...
Sodium-dependent phosphate transport in a rat kidney endosomal fraction. An endosome-enriched fracti...
Chronic metabolic acidosis increases NaDC-1 mRNA and protein abundance in rat kidney.BackgroundChron...
Homeostasis of inorganic phosphate (Pi) is primarily an affair of the kidneys. Reabsorption of the b...
Chronic metabolic acidosis increases NaDC-1 mRNA and protein abundance in rat kidney.BackgroundChron...
AbstractThe effect of ischemia induced acute renal failure (ARF) on the transport of phosphate (Pi) ...
Renal phosphate reabsorption across the brush border membrane (BBM) in the proximal tubule is mediat...
Cellular mechanisms of the age-related decrease in renal phosphate reabsorption. The aging process i...
Abstract. Renal tubular bicarbonate r absorption and acidification were evaluated inphosphate deplet...
Localization of parathyroid-hormone-independent sodium bicarbonate inhibition of tubular phosphate r...
Nicotinamide is an important regulator of Pi homeostasis after conversion into NAD+/NADH. In this wo...
During metabolic acidosis (MA), urinary phosphate excretion increases and contributes to acid remova...
AbstractThe effect of ischemia induced acute renal failure (ARF) on the transport of phosphate (Pi) ...
Recently, me cloned a cDNA (NaSi-1) localized to rat renal proximal tubules and encoding the brush-b...
Effects of phosphate intake on distribution of type II Na/Pi cotransporter mRNA in rat kidney.Backgr...
Recently, we cloned a cDNA (NaS(i)-1) localized to rat renal proximal tubules and encoding the brush...
Sodium-dependent phosphate transport in a rat kidney endosomal fraction. An endosome-enriched fracti...
Chronic metabolic acidosis increases NaDC-1 mRNA and protein abundance in rat kidney.BackgroundChron...
Homeostasis of inorganic phosphate (Pi) is primarily an affair of the kidneys. Reabsorption of the b...
Chronic metabolic acidosis increases NaDC-1 mRNA and protein abundance in rat kidney.BackgroundChron...
AbstractThe effect of ischemia induced acute renal failure (ARF) on the transport of phosphate (Pi) ...
Renal phosphate reabsorption across the brush border membrane (BBM) in the proximal tubule is mediat...
Cellular mechanisms of the age-related decrease in renal phosphate reabsorption. The aging process i...
Abstract. Renal tubular bicarbonate r absorption and acidification were evaluated inphosphate deplet...
Localization of parathyroid-hormone-independent sodium bicarbonate inhibition of tubular phosphate r...
Nicotinamide is an important regulator of Pi homeostasis after conversion into NAD+/NADH. In this wo...