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GLP-1 Suppresses Feeding Behaviors and Modulates Neuronal Electrophysiological Properties in Multiple Brain Regions
by
Yang, Wu
, Chen, Xin-Yi
, Xie, An-Mu
, Chen, Lei
in
Body weight
/ Brain
/ Brain architecture
/ Central nervous system
/ Depolarization
/ Diencephalon
/ electrophysiological property
/ Energy metabolism
/ Excitability
/ Feeding behavior
/ Food
/ Food intake
/ Functional morphology
/ GLP-1
/ Glucagon
/ Glucagon-like peptide 1
/ Glucose
/ Glutamatergic transmission
/ Hypothalamus
/ Medulla oblongata
/ Membrane potential
/ Mesencephalon
/ Molecular Neuroscience
/ Nervous system
/ Neuromodulation
/ Neurotransmission
/ Peptides
/ Pons
/ spontaneous firing activity
/ synaptic transmission
/ Telencephalon
/ γ-Aminobutyric acid
2021
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GLP-1 Suppresses Feeding Behaviors and Modulates Neuronal Electrophysiological Properties in Multiple Brain Regions
by
Yang, Wu
, Chen, Xin-Yi
, Xie, An-Mu
, Chen, Lei
in
Body weight
/ Brain
/ Brain architecture
/ Central nervous system
/ Depolarization
/ Diencephalon
/ electrophysiological property
/ Energy metabolism
/ Excitability
/ Feeding behavior
/ Food
/ Food intake
/ Functional morphology
/ GLP-1
/ Glucagon
/ Glucagon-like peptide 1
/ Glucose
/ Glutamatergic transmission
/ Hypothalamus
/ Medulla oblongata
/ Membrane potential
/ Mesencephalon
/ Molecular Neuroscience
/ Nervous system
/ Neuromodulation
/ Neurotransmission
/ Peptides
/ Pons
/ spontaneous firing activity
/ synaptic transmission
/ Telencephalon
/ γ-Aminobutyric acid
2021
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GLP-1 Suppresses Feeding Behaviors and Modulates Neuronal Electrophysiological Properties in Multiple Brain Regions
by
Yang, Wu
, Chen, Xin-Yi
, Xie, An-Mu
, Chen, Lei
in
Body weight
/ Brain
/ Brain architecture
/ Central nervous system
/ Depolarization
/ Diencephalon
/ electrophysiological property
/ Energy metabolism
/ Excitability
/ Feeding behavior
/ Food
/ Food intake
/ Functional morphology
/ GLP-1
/ Glucagon
/ Glucagon-like peptide 1
/ Glucose
/ Glutamatergic transmission
/ Hypothalamus
/ Medulla oblongata
/ Membrane potential
/ Mesencephalon
/ Molecular Neuroscience
/ Nervous system
/ Neuromodulation
/ Neurotransmission
/ Peptides
/ Pons
/ spontaneous firing activity
/ synaptic transmission
/ Telencephalon
/ γ-Aminobutyric acid
2021
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GLP-1 Suppresses Feeding Behaviors and Modulates Neuronal Electrophysiological Properties in Multiple Brain Regions
Journal Article
GLP-1 Suppresses Feeding Behaviors and Modulates Neuronal Electrophysiological Properties in Multiple Brain Regions
2021
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Overview
The glucagon-like peptide-1 (GLP-1) plays important roles in the regulation of food intake and energy metabolism. Peripheral or central GLP-1 suppresses food intake and reduces body weight. The electrophysiological properties of neurons in the mammalian central nervous system reflect the neuronal excitability and the functional organization of the brain. Recent studies focus on elucidating GLP-1-induced suppression of feeding behaviors and modulation of neuronal electrophysiological properties in several brain regions. Here, we summarize that activation of GLP-1 receptor (GLP-1R) suppresses food intake and induces postsynaptic depolarization of membrane potential and/or presynaptic modulation of glutamatergic or GABAergic neurotransmission in brain nuclei located within the medulla oblongata, pons, mesencephalon, diencephalon, and telencephalon. This review may provide a background to guide future research about the cellular mechanisms of GLP-1-induced feeding inhibition.
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