The basolateral potassium channels play an important role in maintaining the membrane transport in the renal proximal tubules (PT) and adenosine receptors have been shown to regulate the trans-epithelial Na absorption in the PT. The aim of the present study is to explore whether adenosine also regulates the basolateral K channel of the PT and to determine the adenosine receptor type and the signaling pathway which mediates the effect of adenosine on the K channel. We have used the single channel recording to examine the basolateral K channel activity in the proximal tubules of the mouse kidney. All experiments were performed in cell-attached patches. Single channel recording has detected a 50 pS inwardly-rectifying K channel with high cha...
We examined the regulation by adenosine of a 305-pS chloride (Cl-) channel in the apical membrane of...
We have previously demonstrated that in A(6) renal epithelial cells, a commonly used model of the ma...
Adenosine plays an important role in regulation of renal microcirculation. All receptors of adenosin...
Both protein kinase C (PKC) and adenosine receptor activation have been shown to enhance ATP-sensiti...
Adenosine influences the vectorial transport. of Na+ and HCO3- across kidney epithelial cells. Howev...
The effect of adenosine regulation on sodium and chloride transport was examined in cultured A6 rena...
AbstractATP-activated P2Y receptors play an important role in renal sodium excretion. The aim of thi...
The effect of adenosine regulation on sodium and chloride transport was examined in cultured A(6) re...
The kidneys play a vital role in the maintenance of extracellular fluid and electrolyte balance and ...
Adenosine stimulation of Na+ transport by an A1 receptor and a [Ca2+]i-dependent mechanism. Studies ...
Regulation of renal apical Na+/H+ exchanger 3 (NHE3) activity by adenosine has been suggested to con...
AbstractThe regulation of the furosemide-sensitive Na+-ATPase activity and ouabain-sensitive (Na++K+...
The effect of adenosine on Na+/H+ exchange activity was examined in cultured A6 renal epithelial cel...
Gene expression of adenosine receptors along the nephron.BackgroundIn view of the multiple effects o...
~en adenosine binds to plasma-membrane receptors on a variety of cell types in the kidney, it stimul...
We examined the regulation by adenosine of a 305-pS chloride (Cl-) channel in the apical membrane of...
We have previously demonstrated that in A(6) renal epithelial cells, a commonly used model of the ma...
Adenosine plays an important role in regulation of renal microcirculation. All receptors of adenosin...
Both protein kinase C (PKC) and adenosine receptor activation have been shown to enhance ATP-sensiti...
Adenosine influences the vectorial transport. of Na+ and HCO3- across kidney epithelial cells. Howev...
The effect of adenosine regulation on sodium and chloride transport was examined in cultured A6 rena...
AbstractATP-activated P2Y receptors play an important role in renal sodium excretion. The aim of thi...
The effect of adenosine regulation on sodium and chloride transport was examined in cultured A(6) re...
The kidneys play a vital role in the maintenance of extracellular fluid and electrolyte balance and ...
Adenosine stimulation of Na+ transport by an A1 receptor and a [Ca2+]i-dependent mechanism. Studies ...
Regulation of renal apical Na+/H+ exchanger 3 (NHE3) activity by adenosine has been suggested to con...
AbstractThe regulation of the furosemide-sensitive Na+-ATPase activity and ouabain-sensitive (Na++K+...
The effect of adenosine on Na+/H+ exchange activity was examined in cultured A6 renal epithelial cel...
Gene expression of adenosine receptors along the nephron.BackgroundIn view of the multiple effects o...
~en adenosine binds to plasma-membrane receptors on a variety of cell types in the kidney, it stimul...
We examined the regulation by adenosine of a 305-pS chloride (Cl-) channel in the apical membrane of...
We have previously demonstrated that in A(6) renal epithelial cells, a commonly used model of the ma...
Adenosine plays an important role in regulation of renal microcirculation. All receptors of adenosin...