Affiliation:
1. Graduate Program in Neuroscience, Graduate School of Biomedical Sciences Tufts University School of Medicine Boston Massachusetts USA
2. Department of Neuroscience Tufts University School of Medicine Boston Massachusetts USA
Abstract
AbstractNeural circuits in the brain, primarily in the hypothalamus, are paramount to the homeostatic control of feeding and energy utilization. They integrate hunger, satiety, and body adiposity cues from the periphery and mediate the appropriate behavioral and physiological responses to satisfy the energy demands of the animal. Notably, perturbations in central homeostatic circuits have been linked to the etiology of excessive feeding and obesity. Considering the ever‐changing energy requirements of the animal and required adaptations, it is not surprising that brain‐feeding circuits remain plastic in adulthood and are subject to changes in synaptic strength as a consequence of nutritional status. Indeed, synapse density, probability of presynaptic transmitter release, and postsynaptic responses in hypothalamic energy balance centers are tailored to behavioral and physiological responses required to sustain survival. Mounting evidence supports key roles of astrocytes facilitating some of this plasticity. Here we discuss these synaptic plasticity mechanisms and the emerging roles of astrocytes influencing energy and glucose balance control in health and disease.This article is categorized under:
Cancer > Molecular and Cellular Physiology
Neurological Diseases > Molecular and Cellular Physiology
Funder
National Institute of Diabetes and Digestive and Kidney Diseases
Subject
Cell Biology,Medicine (miscellaneous)