AbstractHepatic urea formation removes bicarbonate (not CO2), arising from the breakdown of the α-carboxylates of amino acids, in amounts stoichiometric with NH4+. Excess NH4+ is transported via the bloodstream to the kidney in the form of glutamine, there to be degrated by renal glutaminase and excreted via the tubules. By intricate intercellular compartmentation in the liver of a more periportal localization of urea synthesis and glutaminase, the regulation of hepatic glutaminase provides a major point of pH control in the organism. In acidosis, both these processes are shut off, decreasing bicarbonate removal, favoring hepatic glutamine formation by the perivenously located glutamine synthetase, and causing increased renal excreation of ...
Kidneys are central in the regulation of multiple physiological functions, such as removal of metabo...
Kidneys are central in the regulation of multiple physiological functions, such as removal of metabo...
Expression of the glutamine transporter SNAT3 increases in kidney during metabolic acidosis, suggest...
AbstractHepatic urea formation removes bicarbonate (not CO2), arising from the breakdown of the α-ca...
Abstract:- Apart from its role in ammonia elimination hepatic urea synthesis helps to maintain the a...
With respect to hepatocyte heterogeneity in ammonia and amino acid metabolism, two different pattern...
Ammonia partitioning between glutamine and urea: Interorgan participation in metabolic acidosis. The...
In this review, we focus on the effects of various acid-base disorders on the renal metabolism of gl...
A B S TRA CT The effect of variations of medium pH and bicarbonate concentration on glutamine oxidat...
The H(+) concentration in human blood is kept within very narrow limits, ~40 nmol/L, despite the fac...
Glutamate plays a central role in hepatic amino acid metabolism, both because of its role in the tra...
The kidney plays a major role in acid-base homeostasis by adapting the excretion of acid equivalents...
The renal response to metabolic acidosis is mediated, in part, by increased expression of the genes ...
The kidney participates in the maintenance of acid-base homeostasis by 1) reabsorption of the filter...
The static measurement of hydrogen ion activity in body fluids reflects complex interrelationships b...
Kidneys are central in the regulation of multiple physiological functions, such as removal of metabo...
Kidneys are central in the regulation of multiple physiological functions, such as removal of metabo...
Expression of the glutamine transporter SNAT3 increases in kidney during metabolic acidosis, suggest...
AbstractHepatic urea formation removes bicarbonate (not CO2), arising from the breakdown of the α-ca...
Abstract:- Apart from its role in ammonia elimination hepatic urea synthesis helps to maintain the a...
With respect to hepatocyte heterogeneity in ammonia and amino acid metabolism, two different pattern...
Ammonia partitioning between glutamine and urea: Interorgan participation in metabolic acidosis. The...
In this review, we focus on the effects of various acid-base disorders on the renal metabolism of gl...
A B S TRA CT The effect of variations of medium pH and bicarbonate concentration on glutamine oxidat...
The H(+) concentration in human blood is kept within very narrow limits, ~40 nmol/L, despite the fac...
Glutamate plays a central role in hepatic amino acid metabolism, both because of its role in the tra...
The kidney plays a major role in acid-base homeostasis by adapting the excretion of acid equivalents...
The renal response to metabolic acidosis is mediated, in part, by increased expression of the genes ...
The kidney participates in the maintenance of acid-base homeostasis by 1) reabsorption of the filter...
The static measurement of hydrogen ion activity in body fluids reflects complex interrelationships b...
Kidneys are central in the regulation of multiple physiological functions, such as removal of metabo...
Kidneys are central in the regulation of multiple physiological functions, such as removal of metabo...
Expression of the glutamine transporter SNAT3 increases in kidney during metabolic acidosis, suggest...