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From intestines to skeleton: The impact of incretin hormones on human bone
Morten S Hansen
KI, OUH, Forskningsenhed for Endokrinologi (Odense)
Klinisk Institut
Publikation
:
Afhandling
›
Ph.d.-afhandling
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Fingeraftryk
Publikationer
(4)
Fingeraftryk
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Medicine and Dentistry
Biological Marker
25%
Bone Density
8%
Bone Tissue
8%
Bone Turnover
16%
Cell Activity
8%
Confocal Microscopy
8%
Food Intake
25%
G Protein Coupled Receptor
16%
Gastric Inhibitory Polypeptide
100%
Gastrointestinal Hormone
8%
Glucagon Like Peptide 1
83%
Glucagon Like Peptide 1 Receptor
16%
Glucagon-Like Peptide-1 Agonist
33%
Hip
8%
Hormone Receptor
8%
In Vitro
41%
Incretin
100%
Insulin Release
8%
Intestine
100%
Mineralization
8%
Ossification
16%
Osteoblast
41%
Osteoclast
50%
Osteoclast Activity
50%
Osteoclastogenesis
25%
Osteolysis
41%
Placebo
8%
Polypeptide
8%
Receptor
25%
Receptor Antagonist
8%
Receptor Expression
8%
RNA Sequence
16%
Semaglutide
41%
Signal Transduction
8%
Skeleton
100%
Immunology and Microbiology
Adaptation
16%
Agonist
100%
Blood Level
33%
Bone Cell
16%
Bone Density
16%
Bone Tissue
16%
Bone Turnover
33%
Cell Activity
16%
Hip
16%
Insulin Release
16%
Intestine
100%
Mineralization
16%
Ossification
33%
Osteoblast
83%
Osteoclast
100%
Osteoclast Activity
100%
Osteoclastogenesis
50%
Osteolysis
83%
Pancreas
16%
RNA Sequence
33%
Signal Transduction
16%
Skeleton
100%
Pharmacology, Toxicology and Pharmaceutical Science
Biological Marker
25%
Confocal Microscopy
8%
G Protein Coupled Receptor
16%
Gastric Inhibitory Polypeptide
100%
Gastrointestinal Hormone
8%
Glucagon Like Peptide 1 Receptor Agonist
33%
Glucagon-Like Peptide 1 Receptor
16%
Glucagon-Like Peptide-1
83%
Hormone Receptor
8%
Incretin
100%
Placebo
8%
Polypeptide
8%
Receptor
25%
Receptor Antagonist
8%
RNA-Sequencing
16%
Semaglutide
41%