To investigate the ability of the glial cell to control the extracellular K+ ion concentration in the CNS 3 kinds of experiment were carried out. (1) The ability of isolated cell fractions enriched in glia or neurons to reaccumulate K+ was measured. (2) The activation of the Na+single bondK+-ATPase by K+ was measured on these isolated cell suspensions. (3) Plasma membrane fractions were prepared from neurons and glia and the Na+single bondK+-ATPase activity was studied as a function of K+ ion concentration. The glial cell Na+single bondK+-ATPase was always more active, approximately 2.5- to 4-fold, and markedly more sensitive to variations in the K+ ion concentration than the neuronal ATPase. These results support the idea that control of t...
The mode of Na+ entry and the dynamics of intracellular Na+ concentration ([Na+]i) changes consecuti...
Introduction: Removal of potassium by glial cells implies the net uptake of potassium at sites of el...
Astrocytes play a central role in the brain by regulating glutamate and extracellular potassium conc...
Since capillaries appear not to contribute significantly to rapid removal of K+ from brain tissue, ...
Brain excitation increases neuronal Na+ concentration by 2 major mechanisms: i) Na+influx caused by ...
The excitatory amino acid glutamate was previously shown to stimulate aerobic glycolysis in astrocyt...
The role of cell type-specific Na+,K+-ATPase isozymes in function-related glucose metabolism was stu...
Peer Reviewedhttp://deepblue.lib.umich.edu/bitstream/2027.42/65613/1/j.1471-4159.1971.tb00023.x.pd
Extracellular potassium concentration, [K(+)](o), and intracellular calcium, [Ca(2+)](i), rise durin...
Brain capillary endothelial cells play an important role in ion homeostasis of the brain through the...
Astrocytes play a critical role in CNS metabolism, regulation of volume and ion homeostasis of the i...
1. Double-barrelled ion-sensitive micro-electrodes were used to measure changes in the intracellular...
The optic nerve of Necturus has proved a useful preparation for the study of glial cell membranes in...
AbstractIt has long been assumed that one important mechanism for the dissipation of local potassium...
The mode of Na+ entry and the dynamics of intracellular Na+ concentration ([Na+]i) changes consecuti...
The mode of Na+ entry and the dynamics of intracellular Na+ concentration ([Na+]i) changes consecuti...
Introduction: Removal of potassium by glial cells implies the net uptake of potassium at sites of el...
Astrocytes play a central role in the brain by regulating glutamate and extracellular potassium conc...
Since capillaries appear not to contribute significantly to rapid removal of K+ from brain tissue, ...
Brain excitation increases neuronal Na+ concentration by 2 major mechanisms: i) Na+influx caused by ...
The excitatory amino acid glutamate was previously shown to stimulate aerobic glycolysis in astrocyt...
The role of cell type-specific Na+,K+-ATPase isozymes in function-related glucose metabolism was stu...
Peer Reviewedhttp://deepblue.lib.umich.edu/bitstream/2027.42/65613/1/j.1471-4159.1971.tb00023.x.pd
Extracellular potassium concentration, [K(+)](o), and intracellular calcium, [Ca(2+)](i), rise durin...
Brain capillary endothelial cells play an important role in ion homeostasis of the brain through the...
Astrocytes play a critical role in CNS metabolism, regulation of volume and ion homeostasis of the i...
1. Double-barrelled ion-sensitive micro-electrodes were used to measure changes in the intracellular...
The optic nerve of Necturus has proved a useful preparation for the study of glial cell membranes in...
AbstractIt has long been assumed that one important mechanism for the dissipation of local potassium...
The mode of Na+ entry and the dynamics of intracellular Na+ concentration ([Na+]i) changes consecuti...
The mode of Na+ entry and the dynamics of intracellular Na+ concentration ([Na+]i) changes consecuti...
Introduction: Removal of potassium by glial cells implies the net uptake of potassium at sites of el...
Astrocytes play a central role in the brain by regulating glutamate and extracellular potassium conc...