Sodium dynamics are essential for regulating functional processes in glial cells. Indeed, glial Na(+) signaling influences and regulates important glial activities, and plays a role in neuron-glia interaction under physiological conditions or in response to injury of the central nervous system (CNS). Emerging studies indicate that Na(+) pumps and Na(+) -dependent ion transporters in astrocytes, microglia, and oligodendrocytes regulate Na(+) homeostasis and play a fundamental role in modulating glial activities in neurological diseases. In this review, we first briefly introduced the emerging roles of each glial cell type in the pathophysiology of cerebral ischemia, Alzheimer's disease, epilepsy, Parkinson's disease, Amyotrophic Lateral Scle...
Brain excitation increases neuronal Na+ concentration by 2 major mechanisms: i) Na+influx caused by ...
The mode of Na+ entry and the dynamics of intracellular Na+ concentration ([Na+]i) changes consecuti...
SummarySodium (Na) homeostasis is crucial for life, and Na levels in body fluids are constantly moni...
Sodium dynamics are essential for regulating functional processes in glial cells. Indeed, glial Na(+...
The transmembrane Na+ concentration gradient is an important source of energy required not only to e...
The Na(+) gradient across the plasma membrane is constantly exploited by astrocytes as a secondary e...
At tripartite synapses, astrocytes undergo calcium signaling in response to release of neurotransmit...
AbstractAlzheimer's disease (AD) is associated with impaired glutamate clearance and depressed Na+/K...
Glutamate released during neuronal activity is cleared from the synaptic space via the astrocytic gl...
Electrical activity of neurons in the brain, caused by the movement of ions between intracellular an...
During ischemia, the operation of astrocytic/neuronal glutamate transporters is reversed and glutama...
Recent work has established that glutamatergic synaptic activity induces transient sodium elevations...
Glial cells constitute a large percentage of cells in the nervous system. During recent years, a lar...
The mode of Na+ entry and the dynamics of intracellular Na+ concentration ([Na+]i) changes consecuti...
Na+, K+-ATPase is a highly expressed membrane protein. Dysfunction of Na+, K+-ATPase has been implic...
Brain excitation increases neuronal Na+ concentration by 2 major mechanisms: i) Na+influx caused by ...
The mode of Na+ entry and the dynamics of intracellular Na+ concentration ([Na+]i) changes consecuti...
SummarySodium (Na) homeostasis is crucial for life, and Na levels in body fluids are constantly moni...
Sodium dynamics are essential for regulating functional processes in glial cells. Indeed, glial Na(+...
The transmembrane Na+ concentration gradient is an important source of energy required not only to e...
The Na(+) gradient across the plasma membrane is constantly exploited by astrocytes as a secondary e...
At tripartite synapses, astrocytes undergo calcium signaling in response to release of neurotransmit...
AbstractAlzheimer's disease (AD) is associated with impaired glutamate clearance and depressed Na+/K...
Glutamate released during neuronal activity is cleared from the synaptic space via the astrocytic gl...
Electrical activity of neurons in the brain, caused by the movement of ions between intracellular an...
During ischemia, the operation of astrocytic/neuronal glutamate transporters is reversed and glutama...
Recent work has established that glutamatergic synaptic activity induces transient sodium elevations...
Glial cells constitute a large percentage of cells in the nervous system. During recent years, a lar...
The mode of Na+ entry and the dynamics of intracellular Na+ concentration ([Na+]i) changes consecuti...
Na+, K+-ATPase is a highly expressed membrane protein. Dysfunction of Na+, K+-ATPase has been implic...
Brain excitation increases neuronal Na+ concentration by 2 major mechanisms: i) Na+influx caused by ...
The mode of Na+ entry and the dynamics of intracellular Na+ concentration ([Na+]i) changes consecuti...
SummarySodium (Na) homeostasis is crucial for life, and Na levels in body fluids are constantly moni...