Astrocytes support neuronal function by providing essential structural and nutritional support, neurotransmitter trafficking and recycling and may also contribute to brain information processing. In this article we review published results and report new data suggesting that astrocytes function as versatile metabolic sensors of central nervous system (CNS) milieu and play an important role in the maintenance of brain metabolic homeostasis. We discuss anatomical and functional features of astrocytes that allow them to detect and respond to changes in the brain parenchymal levels of metabolic substrates (oxygen and glucose), and metabolic waste products (carbon dioxide). We report data suggesting that astrocytes are also sensitive to circulat...
Maintenance of constant brain pH is critically important to support the activity of individual neuro...
SummaryAstrocytes are proposed to participate in brain energy metabolism by supplying substrates to ...
Brain plays a central role in energy homeostasis continuously integrating numerous peripheral signal...
Normal brain function highly relies on the appropriate functioning of astrocytes. These glial cells ...
Normal brain function highly relies on the appropriate functioning of astrocytes. These glial cells...
The energy requirements of the brain are very high, and tight regulatory mechanisms operate to ensur...
Since the initial description of astrocytes by neuroanatomists of the nineteenth century, a critical...
Astrocytes have historically been considered structural supporting cells for neurons. Thanks to new ...
Astrocytes are the most abundant glial cell in the central nervous system and are involved in multip...
The brain has almost no energy reserve, but its activity coordinates organismal function, a burden t...
Molecules acting in the central nervous system play a critical role in the control of both energy an...
Astrocytes constitute a very heterogeneous population of cells, which regulate pH, extracellular lev...
Astrocytes comprise half of the cells in the central nervous system and play a critical role in main...
In the classical model the energy requirements during neuronal activation are provided by the delive...
Astrocytes are the main neural cell type responsible for the maintenance of brain homeostasis. They ...
Maintenance of constant brain pH is critically important to support the activity of individual neuro...
SummaryAstrocytes are proposed to participate in brain energy metabolism by supplying substrates to ...
Brain plays a central role in energy homeostasis continuously integrating numerous peripheral signal...
Normal brain function highly relies on the appropriate functioning of astrocytes. These glial cells ...
Normal brain function highly relies on the appropriate functioning of astrocytes. These glial cells...
The energy requirements of the brain are very high, and tight regulatory mechanisms operate to ensur...
Since the initial description of astrocytes by neuroanatomists of the nineteenth century, a critical...
Astrocytes have historically been considered structural supporting cells for neurons. Thanks to new ...
Astrocytes are the most abundant glial cell in the central nervous system and are involved in multip...
The brain has almost no energy reserve, but its activity coordinates organismal function, a burden t...
Molecules acting in the central nervous system play a critical role in the control of both energy an...
Astrocytes constitute a very heterogeneous population of cells, which regulate pH, extracellular lev...
Astrocytes comprise half of the cells in the central nervous system and play a critical role in main...
In the classical model the energy requirements during neuronal activation are provided by the delive...
Astrocytes are the main neural cell type responsible for the maintenance of brain homeostasis. They ...
Maintenance of constant brain pH is critically important to support the activity of individual neuro...
SummaryAstrocytes are proposed to participate in brain energy metabolism by supplying substrates to ...
Brain plays a central role in energy homeostasis continuously integrating numerous peripheral signal...