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Molecular pharmacology and physiology of nociceptin
Hiroshi Ueda,
Makoto Inoue
Research output
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Contribution to journal
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Review article
›
peer-review
Overview
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Keyphrases
Analgesic Tolerance
12%
Anti-opioid
12%
Antinociceptive
25%
Central Nervous System
12%
Endogenous Ligand
12%
G Protein-coupled
12%
Hearing Problems
12%
High Dose
12%
Knock-in Mouse Model
25%
Ligand-receptor Binding
12%
Memory-based Learning
12%
Molecular Pharmacology
100%
Molecular Physiology
100%
Morphine
12%
Nociceptin
100%
Nociceptin Receptor
12%
Nociception
12%
Nociception Test
12%
Nociceptor
12%
Opioid Receptors
25%
Orphan Receptor
12%
P Release
12%
Pain Management
12%
Pain Memory
12%
Phospholipase C Activity
12%
Physiological Role
25%
Receptor Knockout
25%
Reverse Pharmacology
12%
Route of Administration
12%
Substance P
12%
Medicine and Dentistry
Anodyne
16%
Central Nervous System
16%
Drug Administration Route
16%
Drug Megadose
16%
Guanine Nucleotide Binding Protein
16%
Hearing Loss
16%
Knock Out
33%
Low Drug Dose
16%
Morphine
16%
Nociceptin
100%
Nociceptin Receptor
50%
Nociception
33%
Nociceptor
16%
Opiate
16%
Orphan Receptor
16%
Phospholipase C
16%
Receptor
16%
Reverse Pharmacology
16%
κ-Opioid Receptor
33%
Neuroscience
Central Nervous System
16%
Eicosanoid Receptor
16%
G Protein
16%
Hearing Loss
16%
Molecular Pharmacology
100%
Morphine
16%
Nociceptin
100%
Nociceptin Receptor
50%
Nociception
33%
Nociceptor
16%
Opiate
16%
Orphan Receptor
16%
Phospholipase C
16%
Substance P
16%
δ -Opioid Receptor
33%