AbstractNa-K-ATPase located on the basolateral membrane (BLM) of intestinal epithelial cells provides a favorable intracellular Na+ gradient to promote all Na dependent co-transport processes across the brush border membrane (BBM). Down-regulation of Na-K-ATPase activity has been postulated to alter the absorption via Na-solute co-transporters in human inflammatory bowel disease (IBD). Further, the altered activity of a variety of Na-solute co-transporters in intact villus cells has been reported in animal models of chronic enteritis. But the molecular mechanism of down-regulation of Na-K-ATPase is not known. In the present study, using a rabbit model of chronic intestinal inflammation, which resembles human IBD, Na-K-ATPase in villus cells...
BACKGROUND:The Na-H exchanger [NHE] performs an electroneutral uptake of NaCl and water from the lum...
(A) Na-dependent glutamine uptake was significantly decreased in villus cells from the chronically i...
International audienceIntestine function relies on the strong polarity of intestinal epithelial cell...
AbstractNa-K-ATPase located on the basolateral membrane (BLM) of intestinal epithelial cells provide...
Na-amino acid co-transporters (NaAAcT) are uniquely affected in rabbit intestinal villus cell brush ...
Although impaired intestinal sodium transport has been described for decades as a ubiquitous feature...
During chronic intestinal inflammation in rabbit intestinal villus cells brush border membrane (BBM)...
During chronic intestinal inflammation in rabbit intestinal villus cells brush border membrane (BBM)...
AbstractAmino acids, a critical energy source for the intestinal epithelial cells, are more efficien...
Na-amino acid co-transporters (NaAAcT) are uniquely affected in rabbit intestinal villus cell brush ...
In the mammalian intestine, glutamine assimilation by the absorptive villus cells is mediated by Na-...
cose and the nutrient coupled transcellular sodium traffic across epithelial cells in the small inte...
Na-glutamine co-transporter B0AT1 is regulated through arachidonic acid pathway, specifically COX pa...
AbstractAmino acids, a critical energy source for the intestinal epithelial cells, are more efficien...
AbstractGlutamine is a major nutrient utilized by the intestinal epithelium and is primarily assimil...
BACKGROUND:The Na-H exchanger [NHE] performs an electroneutral uptake of NaCl and water from the lum...
(A) Na-dependent glutamine uptake was significantly decreased in villus cells from the chronically i...
International audienceIntestine function relies on the strong polarity of intestinal epithelial cell...
AbstractNa-K-ATPase located on the basolateral membrane (BLM) of intestinal epithelial cells provide...
Na-amino acid co-transporters (NaAAcT) are uniquely affected in rabbit intestinal villus cell brush ...
Although impaired intestinal sodium transport has been described for decades as a ubiquitous feature...
During chronic intestinal inflammation in rabbit intestinal villus cells brush border membrane (BBM)...
During chronic intestinal inflammation in rabbit intestinal villus cells brush border membrane (BBM)...
AbstractAmino acids, a critical energy source for the intestinal epithelial cells, are more efficien...
Na-amino acid co-transporters (NaAAcT) are uniquely affected in rabbit intestinal villus cell brush ...
In the mammalian intestine, glutamine assimilation by the absorptive villus cells is mediated by Na-...
cose and the nutrient coupled transcellular sodium traffic across epithelial cells in the small inte...
Na-glutamine co-transporter B0AT1 is regulated through arachidonic acid pathway, specifically COX pa...
AbstractAmino acids, a critical energy source for the intestinal epithelial cells, are more efficien...
AbstractGlutamine is a major nutrient utilized by the intestinal epithelium and is primarily assimil...
BACKGROUND:The Na-H exchanger [NHE] performs an electroneutral uptake of NaCl and water from the lum...
(A) Na-dependent glutamine uptake was significantly decreased in villus cells from the chronically i...
International audienceIntestine function relies on the strong polarity of intestinal epithelial cell...