Astroglial excitability operates through increases in Ca 2+ cyt (cytosolic Ca 2+ ), which can lead to glutamatergic gliotransmission. In parallel fluctuations in astrocytic Na + cyt (cytosolic Na + ) control metabolic neuronal-glial signalling, most notably through stimulation of lactate production, which on release from astrocytes can be taken up and utilized by nearby neurons, a process referred to as lactate shuttle. Both gliotransmission and lactate shuttle play a role in modulation of synaptic transmission and plasticity. Consequently, we studied the role of the PMCA (plasma membrane Ca 2+ -ATPase), NCX (plasma membrane Na + /Ca 2+ exchanger) and NKA (Na + /K + -ATPase) in complex and coordinated regulation of Ca 2+ cyt and Na + cyt in...
Astrocytes appear to be ideally localized to couple neuronal activity to energy metabolism. First, s...
It has recently been proposed using a multi-compartmental mathematical model that negatively fixed c...
In the past 15 years the classical view that astrocytes play a relatively passive role in brain func...
Glutamate-evoked Na+ increase in astrocytes has been identified as a signal coupling synaptic activi...
It has recently been proposed using a multi-compartmental mathematical model that negatively fixed c...
AbstractAstrocytes can exocytotically release the gliotransmitter glutamate from vesicular compartme...
It has recently been proposed using a multi-compartmental mathematical model that negatively fixed c...
Brain excitation increases neuronal Na+ concentration by 2 major mechanisms: i) Na+influx caused by ...
Communication between neuronal and glial cells is important for many brain functions. Astrocytes can...
Intracellular Ca2+ concentrations are strictly controlled by plasma membrane transporters, the endop...
<div><p>Communication between neuronal and glial cells is important for many brain functions. Astroc...
Glutamate, released at a majority of excitatory synapses in the central nervous system, depolarizes ...
Mitochondria not only provide cells with energy, but are central to Ca(2+) signaling. Powered by the...
Astrocytes, a subtype of glial cells in the central nervous system, have for years been treated as m...
Abstract. In neurons, as in other excitable cells, mitochondria extrude Ca(2+) ions from their ma...
Astrocytes appear to be ideally localized to couple neuronal activity to energy metabolism. First, s...
It has recently been proposed using a multi-compartmental mathematical model that negatively fixed c...
In the past 15 years the classical view that astrocytes play a relatively passive role in brain func...
Glutamate-evoked Na+ increase in astrocytes has been identified as a signal coupling synaptic activi...
It has recently been proposed using a multi-compartmental mathematical model that negatively fixed c...
AbstractAstrocytes can exocytotically release the gliotransmitter glutamate from vesicular compartme...
It has recently been proposed using a multi-compartmental mathematical model that negatively fixed c...
Brain excitation increases neuronal Na+ concentration by 2 major mechanisms: i) Na+influx caused by ...
Communication between neuronal and glial cells is important for many brain functions. Astrocytes can...
Intracellular Ca2+ concentrations are strictly controlled by plasma membrane transporters, the endop...
<div><p>Communication between neuronal and glial cells is important for many brain functions. Astroc...
Glutamate, released at a majority of excitatory synapses in the central nervous system, depolarizes ...
Mitochondria not only provide cells with energy, but are central to Ca(2+) signaling. Powered by the...
Astrocytes, a subtype of glial cells in the central nervous system, have for years been treated as m...
Abstract. In neurons, as in other excitable cells, mitochondria extrude Ca(2+) ions from their ma...
Astrocytes appear to be ideally localized to couple neuronal activity to energy metabolism. First, s...
It has recently been proposed using a multi-compartmental mathematical model that negatively fixed c...
In the past 15 years the classical view that astrocytes play a relatively passive role in brain func...