Astrocytes, microglia, and tanycytes play active roles in the regulation of hypothalamic feeding circuits. These non-neuronal cells are crucial in determining the functional interactions of specific neuronal subpopulations involved in the control of metabolism. Recent advances in biology, optics, genetics, and pharmacology have resulted in the emergence of novel and highly sophisticated approaches for studying hypothalamic neuronal–glial networks. Here we summarize the progress in the field and argue that glial–neuronal interactions provide a core hub integrating food-related cues, interoceptive signals, and internal states to adapt a complex set of physiological responses operating on different timescales to finely tune behavior and metabo...
Astrocytes are a type of glial cell anatomically and functionally integrated into the neuronal regul...
The essential role of the brain in maintaining energy homeostasis has motivated the drive to define ...
In vertebrates, the energy balance process is tightly controlled by complex neural circuits that sen...
Astrocytes, microglia, and tanycytes play active roles in the regulation of hypothalamic feeding cir...
Astrocytes, microglia, and tanycytes play active roles in the regulation of hypothalamic feeding cir...
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...
Tanycytes, glial-like cells that line the third ventricle, are emerging as components of the hypotha...
Molecules acting in the central nervous system play a critical role in the control of both energy an...
The search for new strategies and drugs to abate the current obesity epidemic has led to the intensi...
This is the author accepted manuscript. The final version is available from Elsevier via the DOI in ...
Brain plays a central role in energy homeostasis continuously integrating numerous peripheral signal...
The hypothalamus contains key neural circuits involved in the control of feeding and energy balance....
International audienceNatural fluctuations in physiological conditions require adaptive responses in...
State-of-the-Art review.International audienceMaintaining energy balance is essential for survival a...
Astrocytes are a type of glial cell anatomically and functionally integrated into the neuronal regul...
The essential role of the brain in maintaining energy homeostasis has motivated the drive to define ...
In vertebrates, the energy balance process is tightly controlled by complex neural circuits that sen...
Astrocytes, microglia, and tanycytes play active roles in the regulation of hypothalamic feeding cir...
Astrocytes, microglia, and tanycytes play active roles in the regulation of hypothalamic feeding cir...
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...
Tanycytes, glial-like cells that line the third ventricle, are emerging as components of the hypotha...
Molecules acting in the central nervous system play a critical role in the control of both energy an...
The search for new strategies and drugs to abate the current obesity epidemic has led to the intensi...
This is the author accepted manuscript. The final version is available from Elsevier via the DOI in ...
Brain plays a central role in energy homeostasis continuously integrating numerous peripheral signal...
The hypothalamus contains key neural circuits involved in the control of feeding and energy balance....
International audienceNatural fluctuations in physiological conditions require adaptive responses in...
State-of-the-Art review.International audienceMaintaining energy balance is essential for survival a...
Astrocytes are a type of glial cell anatomically and functionally integrated into the neuronal regul...
The essential role of the brain in maintaining energy homeostasis has motivated the drive to define ...
In vertebrates, the energy balance process is tightly controlled by complex neural circuits that sen...