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Hoffmann, R. A wiki for the life sciences where authorship matters. Nature Genetics (2008)
 
 
 
 
 

Effect of D-glucose on oxygen consumption of renal proximal tubules of the Triturus.

Effect of exogenous D-glucose on oxygen consumption (QO2) was investigated in the proximal tubules of the Triturus kidney. In the proximal tubule, which was perfused and incubated with a solution containing Na+, QO2 was increased dependently of the concentration of added glucose. By removal of Na+ from the perfusate and incubation solutions, QO2 kept the level even by increasing adding glucose. The glucose dependence of Qo2 in the proximal tubule showed the saturable manner of a Michaelis-Menten type and gave a half saturation concentration of 1.3 mM. When phlorizin (1 X 10(-3) M) or ouabain (1 X 10(-3) M) was added to the perfusate and incubation solutions, the glucose dependency of QO2 was abolished, even in the Na+-containing solution. When alpha-methyl-D-glucoside (alpha-MG) was used instead of D-glucose, the QO2 of the proximal tubule showed a dependency on the concentration of alpha-MG. On the other hand, when D-mannitol was used instead of D-glucose, the QO2 was independent on the concentration of D-mannitol. The increase in QO2 of the proximal tubule by exogenous D-glucose could be explained by the stimulation of the Na+ pump, which is the consequence of enhanced Na+ entry through Na+/D-glucose cotransport across the luminal membrane.[1]

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