Chronic metabolic acidosis results in renal Ca2+ and Mg2+ wasting, whereas chronic metabolic alkalosis is known to exert the reverse effects. It was hypothesized that these adaptations are mediated at least in part by the renal Ca2+ and Mg2+ transport proteins. The aim of this study, therefore, was to determine the effect of systemic acid-base status on renal expression of the epithelial Ca2+ channel TRPV5, the Ca2+-binding protein calbindin-D28K, and the epithelial Mg2+ channel TRPM6 in relation to Ca2+ and Mg2+ excretion. Chronic metabolic acidosis that was induced by NH4Cl loading or administration of the carbonic anhydrase inhibitor acetazolamide for 6 d enhanced calciuresis accompanied by decreased renal TRPV5 and calbindin-D28K mRNA a...
Calcium is very important for many physiological functions that take place in the body. The interact...
The kidney plays an important role in maintaining the systemic Ca2+ and Mg2+ balance. Thus the renal...
Body Ca2þ homeostasis is tightly controlled and slight disturbances in renal Ca2þ reabsorption can l...
Chronic metabolic acidosis results in renal Ca2 and Mg2wasting, whereas chronic metabolic alkalosis...
Ca2+ is essential for numerous physiological functions in our bodies. Therefore, its homeostasis is ...
High dietary protein imposes a metabolic acid load requiring excretion and buffering by the kidney. ...
High dietary protein imposes a metabolic acid load requiring excretion and buffering by the kidney. ...
minerals are essential for many physio-logic processes.1 Ca2 plays a pathologic role in osteoporosi...
Hypercalciuria is a common feature during metabolic acidosis and associates to nephrolithiasis and n...
Contains fulltext : 142435.pdf (publisher's version ) (Open Access)Ca2+ ions play ...
Body Ca2+ homeostasis is tightly controlled and slight disturbances in renal Ca2+ reabsorption can l...
Contains fulltext : 49423.pdf (publisher's version ) (Closed access)Many physiolog...
Hypercalciuria increases the risk for urolithiasis, but renal adaptive mechanisms reduce this risk. ...
Contains fulltext : 81328.pdf (publisher's version ) (Open Access)Hypercalciuria i...
BACKGROUND: Magnesium (Mg(2+)) is an essential electrolyte with important physiological functions. C...
Calcium is very important for many physiological functions that take place in the body. The interact...
The kidney plays an important role in maintaining the systemic Ca2+ and Mg2+ balance. Thus the renal...
Body Ca2þ homeostasis is tightly controlled and slight disturbances in renal Ca2þ reabsorption can l...
Chronic metabolic acidosis results in renal Ca2 and Mg2wasting, whereas chronic metabolic alkalosis...
Ca2+ is essential for numerous physiological functions in our bodies. Therefore, its homeostasis is ...
High dietary protein imposes a metabolic acid load requiring excretion and buffering by the kidney. ...
High dietary protein imposes a metabolic acid load requiring excretion and buffering by the kidney. ...
minerals are essential for many physio-logic processes.1 Ca2 plays a pathologic role in osteoporosi...
Hypercalciuria is a common feature during metabolic acidosis and associates to nephrolithiasis and n...
Contains fulltext : 142435.pdf (publisher's version ) (Open Access)Ca2+ ions play ...
Body Ca2+ homeostasis is tightly controlled and slight disturbances in renal Ca2+ reabsorption can l...
Contains fulltext : 49423.pdf (publisher's version ) (Closed access)Many physiolog...
Hypercalciuria increases the risk for urolithiasis, but renal adaptive mechanisms reduce this risk. ...
Contains fulltext : 81328.pdf (publisher's version ) (Open Access)Hypercalciuria i...
BACKGROUND: Magnesium (Mg(2+)) is an essential electrolyte with important physiological functions. C...
Calcium is very important for many physiological functions that take place in the body. The interact...
The kidney plays an important role in maintaining the systemic Ca2+ and Mg2+ balance. Thus the renal...
Body Ca2þ homeostasis is tightly controlled and slight disturbances in renal Ca2þ reabsorption can l...