Studies of luminal and contraluminal membranes isolated from epithelial cells have contributed markedly to our understanding of the molecular mechanisms, the driving forces and the sequence of events involved in transcellular transport of solutes. They were extended recently to investigate the properties of phosphate transport systems in renal and intestinal brush border and basal-lateral plasma membrane vesicles. The investigations revealed that both in the renal proximal tubule and in the small intestine the luminal membranes but not the contraluminal membranes contain a sodium-phosphate cotransport system. This suggests that the driving force for the transcellular phosphate movement is derived from the sodium gradient present and maintai...
Inorganic phosphate and sulfate are the major divalent anions in biological fluids at physiological ...
Renal proximal tubular Na/phosphate cotransport is the key target in the control of renal phosphate ...
The polarized distribution of phosphate (Pi) transport systems in a continuous renal cell line deriv...
A sodium dependent specific transport system for phosphate is present in the brush border microvilli...
One way to obtain a deeper understanding of the complex function of the small intestinal and renal p...
One way to obtain a deeper understanding of the complex function of the small intestinal and renal p...
Studies using intact tissue preparations have documented that transepithelial transport of inorganic...
Brush border membranes (luminal) and basal-lateral plasma membranes (contraluminal) of rat kidney pr...
Uptake of Pi into brush-border membrane vesicles isolated from rat small intestine was investigated ...
Renal proximal tubular reabsorption of P(i) is a key element in overall P(i) homeostasis, and it inv...
Transport mechanisms involved in the small intestinal handling of inorganic phosphate and calcium ha...
Sodium-dependent transport of inorganic phosphate into brush border membrane vesicles is strongly in...
Inorganic phosphate (P) is crucial for many biological functions, such as energy metabolism, signal ...
Inorganic phosphate (P) is crucial for many biological functions, such as energy metabolism, signal ...
Two renal proximal tubular apical sodium-dependent transport systems for phosphate (Na/Pi cotranspor...
Inorganic phosphate and sulfate are the major divalent anions in biological fluids at physiological ...
Renal proximal tubular Na/phosphate cotransport is the key target in the control of renal phosphate ...
The polarized distribution of phosphate (Pi) transport systems in a continuous renal cell line deriv...
A sodium dependent specific transport system for phosphate is present in the brush border microvilli...
One way to obtain a deeper understanding of the complex function of the small intestinal and renal p...
One way to obtain a deeper understanding of the complex function of the small intestinal and renal p...
Studies using intact tissue preparations have documented that transepithelial transport of inorganic...
Brush border membranes (luminal) and basal-lateral plasma membranes (contraluminal) of rat kidney pr...
Uptake of Pi into brush-border membrane vesicles isolated from rat small intestine was investigated ...
Renal proximal tubular reabsorption of P(i) is a key element in overall P(i) homeostasis, and it inv...
Transport mechanisms involved in the small intestinal handling of inorganic phosphate and calcium ha...
Sodium-dependent transport of inorganic phosphate into brush border membrane vesicles is strongly in...
Inorganic phosphate (P) is crucial for many biological functions, such as energy metabolism, signal ...
Inorganic phosphate (P) is crucial for many biological functions, such as energy metabolism, signal ...
Two renal proximal tubular apical sodium-dependent transport systems for phosphate (Na/Pi cotranspor...
Inorganic phosphate and sulfate are the major divalent anions in biological fluids at physiological ...
Renal proximal tubular Na/phosphate cotransport is the key target in the control of renal phosphate ...
The polarized distribution of phosphate (Pi) transport systems in a continuous renal cell line deriv...