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Title
Glucagon action in the brain
Authors
Keywords
Brain, Dorsal vagal complex, Glucagon action, Glucose and energy homeostasis, Hypothalamus, Protein-feeding, Review
Journal
DIABETOLOGIA
Volume 59, Issue 7, Pages 1367-1371
Publisher
Springer Nature
Online
2016-04-26
DOI
10.1007/s00125-016-3950-3
References
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Related references
Note: Only part of the references are listed.- Glucagon signalling in the dorsal vagal complex is sufficient and necessary for high-protein feeding to regulate glucose homeostasis in vivo
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- Glucagon and GLP-1 inhibit food intake and increase c-fos expression in similar appetite regulating centres in the brainstem and amygdala
- (2013) J A Parker et al. INTERNATIONAL JOURNAL OF OBESITY
- Hypothalamic glucagon signaling inhibits hepatic glucose production
- (2013) Patricia I Mighiu et al. NATURE MEDICINE
- Hypothalamic glucagon signals through the KATP channels to regulate glucose production
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- Insulin Activates Erk1/2 Signaling in the Dorsal Vagal Complex to Inhibit Glucose Production
- (2012) Beatrice M. Filippi et al. Cell Metabolism
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- (2012) Kazuhisa Honda et al. COMPARATIVE BIOCHEMISTRY AND PHYSIOLOGY A-MOLECULAR & INTEGRATIVE PHYSIOLOGY
- Endogenous Leptin Signaling in the Caudal Nucleus Tractus Solitarius and Area Postrema Is Required for Energy Balance Regulation
- (2010) Matthew R. Hayes et al. Cell Metabolism
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- (2009) Yohei KUROSE et al. ANIMAL SCIENCE JOURNAL
- Intestinal Cholecystokinin Controls Glucose Production through a Neuronal Network
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- Glucagon-Like Peptide 1/Glucagon Receptor Dual Agonism Reverses Obesity in Mice
- (2009) A. Pocai et al. DIABETES
- Endogenous Hindbrain Glucagon-Like Peptide-1 Receptor Activation Contributes to the Control of Food Intake by Mediating Gastric Satiation Signaling
- (2009) Matthew R. Hayes et al. ENDOCRINOLOGY
- A new glucagon and GLP-1 co-agonist eliminates obesity in rodents
- (2009) Jonathan W Day et al. Nature Chemical Biology
- Caudal Brainstem Processing Is Sufficient for Behavioral, Sympathetic, and Parasympathetic Responses Driven by Peripheral and Hindbrain Glucagon-Like-Peptide-1 Receptor Stimulation
- (2008) Matthew R. Hayes et al. ENDOCRINOLOGY
- Upper intestinal lipids trigger a gut–brain–liver axis to regulate glucose production
- (2008) Penny Y. T. Wang et al. NATURE
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