Glucagon-like peptide 1 (GLP-1)

Глюкагоноподобный пептид 1 (ГПП-1)
Jens J. Holst, Peter R. Flatt, Fiona M. Gribble, Frank Reimann, Michael A. Nauck, Daniel J. Drucker, Timo D. Müller, Brian Finan, Stephen R. Bloom, David A. D’Alessio, Andreas Fritsche, Harvey J. Grill, Joel F. Habener, Wolfgang Langhans, Juris J. Meier, Diego Pérez–Tilve, Alessandro Pocai, Darleen A. Sandoval, Thue W. Schwartz, Randy J. Seeley, Kerstin Stemmer, Mads Tang‐Christensen, Stephen C. Woods, Richard D. DiMarchi, M. Tschöp
2019-09-30

GLP-1 receptor agonistsglucagon-like peptide-1neuroprotective effectsobesity pharmacotherapytype 2 diabetes
BACKGROUND: The glucagon-like peptide-1 (GLP-1) is a multifaceted hormone with broad pharmacological potential. Among the numerous metabolic effects of GLP-1 are the glucose-dependent stimulation of insulin secretion, decrease of gastric emptying, inhibition of food intake, increase of natriuresis and diuresis, and modulation of rodent β-cell proliferation. GLP-1 also has cardio- and neuroprotective effects, decreases inflammation and apoptosis, and has implications for learning and memory, reward behavior, and palatability. Biochemically modified for enhanced potency and sustained action, GLP-1 receptor agonists are successfully in clinical use for the treatment of type-2 diabetes, and several GLP-1-based pharmacotherapies are in clinical evaluation for the treatment of obesity. SCOPE OF REVIEW: In this review, we provide a detailed overview on the multifaceted nature of GLP-1 and its pharmacology and discuss its therapeutic implications on various diseases. MAJOR CONCLUSIONS: Since its discovery, GLP-1 has emerged as a pleiotropic hormone with a myriad of metabolic functions that go well beyond its classical identification as an incretin hormone. The numerous beneficial effects of GLP-1 render this hormone an interesting candidate for the development of pharmacotherapies to treat obesity, diabetes, and neurodegenerative disorders.
1
Biochemically modified GLP-1 receptor agonists provide enhanced potency and sustained action and are clinically used to treat type 2 diabetes.
2
GLP-1 exerts multiple metabolic effects, including glucose-dependent insulin stimulation, reduced gastric emptying and food intake, and increased natriuresis and diuresis.
3
GLP-1 has reported cardio- and neuroprotective, anti-inflammatory, and anti-apoptotic effects, with additional roles in learning, memory, reward behavior, and palatability.
4
GLP-1’s pleiotropic effects support its therapeutic development for obesity, diabetes, and neurodegenerative disorders beyond its classical incretin role.
5
Several GLP-1-based pharmacotherapies are undergoing clinical evaluation for obesity treatment.

Glucagon-like peptide-1 (GLP-1) hormone

GLP-1’s multifaceted pharmacological effects, mechanisms, and therapeutic applications across metabolic, cardiovascular, neurological, and inflammatory disorders

Publication Details
Publication Date
2019-09-30
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Authors
Jens J. Holst
Peter R. Flatt
Fiona M. Gribble
Frank Reimann
Michael A. Nauck
Daniel J. Drucker
Timo D. Müller
Brian Finan
Stephen R. Bloom
David A. D’Alessio
Andreas Fritsche
Harvey J. Grill
Joel F. Habener
Wolfgang Langhans
Juris J. Meier
Diego Pérez–Tilve
Alessandro Pocai
Darleen A. Sandoval
Thue W. Schwartz
Randy J. Seeley
Kerstin Stemmer
Mads Tang‐Christensen
Stephen C. Woods
Richard D. DiMarchi
M. Tschöp
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