Astrocytes can experience large intracellular Na+ changes following the activation of the Na+-coupled glutamate transport. The present study investigated whether cytosolic Na+ changes are transmitted to mitochondria, which could therefore influence their function and contribute to the overall intracellular Na+ regulation. Mitochondrial Na+ (Na+(mit)) changes were monitored using the Na+-sensitive fluorescent probe CoroNa Red (CR) in intact primary cortical astrocytes, as opposed to the classical isolated mitochondria preparation. The mitochondrial localization and Na+ sensitivity of the dye were first verified and indicated that it can be safely used as a selective Na+(mit) indicator. We found by simultaneously monitoring cytosolic and mito...
The effects of inhibitors of the glial Na+/glutamate co-transporter on the intracellular Na+ concent...
Neurons have limited intracellular energy stores but experience acute and unpredictable increases in...
Astrocytes fulfill a central role in regulating K+ and glutamate, both released by neurons into the ...
Mitochondria in intact cells maintain low Na(+) levels despite the large electrochemical gradient fa...
The bioenergetic status of cells is tightly regulated by the activity of cytosolic enzymes and mitoc...
Mitochondria in intact cells maintain low $ Na ^{ + } $ levels despite the large electrochemical gra...
Glutamate uptake into astrocytes and the resulting increase in intracellular Na+ (Na+(i)) have been ...
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...
During synaptic activity, the clearance of neuronally released glutamate leads to an intracellular s...
During synaptic activity, the clearance of neuronally released glutamate leads to an intracellular s...
Mitochondria in intact cells maintain low Na(+) levels despite the large electrochemical gradient fa...
Mitochondria are responsible for synthesis and metabolism of the primary excitatory neurotransmitter...
Glutamate-evoked Na+ increase in astrocytes has been identified as a signal coupling synaptic activi...
ABSTRACT GLUTAMATE TRANSPORT AFFECTS MITOCHONDRIA AND CALCIUM SIGNALING IN ASTROCYTIC PROCESSES UNDE...
The effects of inhibitors of the glial Na+/glutamate co-transporter on the intracellular Na+ concent...
Neurons have limited intracellular energy stores but experience acute and unpredictable increases in...
Astrocytes fulfill a central role in regulating K+ and glutamate, both released by neurons into the ...
Mitochondria in intact cells maintain low Na(+) levels despite the large electrochemical gradient fa...
The bioenergetic status of cells is tightly regulated by the activity of cytosolic enzymes and mitoc...
Mitochondria in intact cells maintain low $ Na ^{ + } $ levels despite the large electrochemical gra...
Glutamate uptake into astrocytes and the resulting increase in intracellular Na+ (Na+(i)) have been ...
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...
During synaptic activity, the clearance of neuronally released glutamate leads to an intracellular s...
During synaptic activity, the clearance of neuronally released glutamate leads to an intracellular s...
Mitochondria in intact cells maintain low Na(+) levels despite the large electrochemical gradient fa...
Mitochondria are responsible for synthesis and metabolism of the primary excitatory neurotransmitter...
Glutamate-evoked Na+ increase in astrocytes has been identified as a signal coupling synaptic activi...
ABSTRACT GLUTAMATE TRANSPORT AFFECTS MITOCHONDRIA AND CALCIUM SIGNALING IN ASTROCYTIC PROCESSES UNDE...
The effects of inhibitors of the glial Na+/glutamate co-transporter on the intracellular Na+ concent...
Neurons have limited intracellular energy stores but experience acute and unpredictable increases in...
Astrocytes fulfill a central role in regulating K+ and glutamate, both released by neurons into the ...