Normal brain function highly relies on the appropriate functioning of astrocytes. These glial cells are strategically situated between blood vessels and neurons, provide significant substrate support to neuronal demand, and are sensitive to neuronal activity and energy-related molecules. Astrocytes respond to many metabolic conditions and regulate a wide array of physiological processes, including cerebral vascular remodeling, glucose sensing, feeding, and circadian rhythms for the control of systemic metabolism and behavior-related responses. This regulation ultimately elicits counterregulatory mechanisms in order to couple whole-body energy availability with brain function. Therefore, understanding the role of astrocyte crosstalk with nei...
Brain plays a central role in energy homeostasis continuously integrating numerous peripheral signal...
The brain has almost no energy reserve, but its activity coordinates organismal function, a burden t...
Evidence suggests that astrocytes might play an important role in cerebral energy metabolism. A rece...
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...
Astrocytes, microglia, and tanycytes play active roles in the regulation of hypothalamic feeding cir...
International audienceAstrocytes, microglia, and tanycytes play active roles in the regulation of hy...
Astrocytes support neuronal function by providing essential structural and nutritional support, neur...
The central nervous system is composed of two main classes of cells: neurons and glia. This chapter ...
In recent years a vast array of experimental evidence has indicated the presence of functional recep...
Astrocytes play a critical role in the regulation of brain metabolic responses to activity. One deta...
Neuroglial cells are fundamental for control of brain homeostasis and synaptic plasticity. Decades o...
The energy requirements of the brain are very high, and tight regulatory mechanisms operate to ensur...
Astrocytes are specialised glial cells that integrate distinct inputs arising from neurones, other g...
Neuron-astrocyte crosstalk is a tightly regulated process that is essential for overall proper funct...
Brain plays a central role in energy homeostasis continuously integrating numerous peripheral signal...
The brain has almost no energy reserve, but its activity coordinates organismal function, a burden t...
Evidence suggests that astrocytes might play an important role in cerebral energy metabolism. A rece...
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...
Astrocytes, microglia, and tanycytes play active roles in the regulation of hypothalamic feeding cir...
International audienceAstrocytes, microglia, and tanycytes play active roles in the regulation of hy...
Astrocytes support neuronal function by providing essential structural and nutritional support, neur...
The central nervous system is composed of two main classes of cells: neurons and glia. This chapter ...
In recent years a vast array of experimental evidence has indicated the presence of functional recep...
Astrocytes play a critical role in the regulation of brain metabolic responses to activity. One deta...
Neuroglial cells are fundamental for control of brain homeostasis and synaptic plasticity. Decades o...
The energy requirements of the brain are very high, and tight regulatory mechanisms operate to ensur...
Astrocytes are specialised glial cells that integrate distinct inputs arising from neurones, other g...
Neuron-astrocyte crosstalk is a tightly regulated process that is essential for overall proper funct...
Brain plays a central role in energy homeostasis continuously integrating numerous peripheral signal...
The brain has almost no energy reserve, but its activity coordinates organismal function, a burden t...
Evidence suggests that astrocytes might play an important role in cerebral energy metabolism. A rece...