Astrocytes are specialised glial cells that integrate distinct inputs arising from neurones, other glial cells and the microcirculation to regulate diverse aspects of brain function. A growing body of emerging evidence supports that astrocytes, similar to neurones, also play active roles in the neuroendocrine control of metabolism by responding to afferent nutritional and hormonal cues and translating these metabolic cues into neuronal inputs. Specifically, insulin action in astrocytes has received special emphasis given its newly discovered regulatory role in brain glucose uptake, which until recently was assumed to be an insulin independent process. We now know that insulin signalling in astrocytes regulates metabolic processes and behavi...
Objectives: Insulin signaling in the brain has been implicated in the control of satiety, glucose ho...
BACKGROUND: The insulin/IGF1 signalling (IIS) pathways are involved in longevity regulation and are ...
Normal brain function highly relies on the appropriate functioning of astrocytes. These glial cells...
We report that astrocytic insulin signaling co-regulates hypothalamic glucose sensing and systemic g...
We report that astrocytic insulin signaling co-regulates hypothalamic glucose sensing and systemic g...
In the human brain, there are at least as many astrocytes as neurons. Astrocytes are known to modula...
Brain activity requires a flux of glucose to active regions to sustain increased metabolic demands. ...
Astrocytes provide neurons with structural support and energy in form of lactate, modulate synaptic ...
Brain plays a central role in energy homeostasis continuously integrating numerous peripheral signal...
Astrocytes have historically been considered structural supporting cells for neurons. Thanks to new ...
International audienceObjective: Astrocytes are glial cells proposed as the main Sonic hedgehog (Shh...
Circulating insulin enters the brain through mechanisms incompletely characterized. We now report th...
Previous findings indicate that reducing brain insulin-like growth factor I receptor (IGF-IR) activi...
Insulin acts on the CNS to modulate behaviour and systemic metabolism. Disturbances in brain insulin...
Normal brain function highly relies on the appropriate functioning of astrocytes. These glial cells ...
Objectives: Insulin signaling in the brain has been implicated in the control of satiety, glucose ho...
BACKGROUND: The insulin/IGF1 signalling (IIS) pathways are involved in longevity regulation and are ...
Normal brain function highly relies on the appropriate functioning of astrocytes. These glial cells...
We report that astrocytic insulin signaling co-regulates hypothalamic glucose sensing and systemic g...
We report that astrocytic insulin signaling co-regulates hypothalamic glucose sensing and systemic g...
In the human brain, there are at least as many astrocytes as neurons. Astrocytes are known to modula...
Brain activity requires a flux of glucose to active regions to sustain increased metabolic demands. ...
Astrocytes provide neurons with structural support and energy in form of lactate, modulate synaptic ...
Brain plays a central role in energy homeostasis continuously integrating numerous peripheral signal...
Astrocytes have historically been considered structural supporting cells for neurons. Thanks to new ...
International audienceObjective: Astrocytes are glial cells proposed as the main Sonic hedgehog (Shh...
Circulating insulin enters the brain through mechanisms incompletely characterized. We now report th...
Previous findings indicate that reducing brain insulin-like growth factor I receptor (IGF-IR) activi...
Insulin acts on the CNS to modulate behaviour and systemic metabolism. Disturbances in brain insulin...
Normal brain function highly relies on the appropriate functioning of astrocytes. These glial cells ...
Objectives: Insulin signaling in the brain has been implicated in the control of satiety, glucose ho...
BACKGROUND: The insulin/IGF1 signalling (IIS) pathways are involved in longevity regulation and are ...
Normal brain function highly relies on the appropriate functioning of astrocytes. These glial cells...