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Cell-autonomous regulation of mu-opioid receptor recycling by substance P
Shanna L. Bowman
, Amanda L. Soohoo
, Daniel J. Shiwarski
, Stefan Schulz
,
Amynah A. Pradhan
, Manojkumar A. Puthenveedu
Department of Anesthesiology
Roy and Diana Vagelos Division of Biology & Biomedical Sciences (DBBS)
DBBS - Molecular Cell Biology
DBBS - Neurosciences
Center for Clinical Pharmacology
Research output
:
Contribution to journal
›
Article
›
peer-review
29
Scopus citations
Overview
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Keyphrases
Non-cell Autonomous
100%
Receptor Recycling
100%
μ-opioid Receptor
100%
Substance P
100%
Autonomous Regulation
100%
Opioid Receptors
33%
Trigeminal Ganglion Neurons
33%
Co-sensitization
33%
Protein Kinase
16%
Receptor Signaling
16%
Morphine
16%
Neurotransmitters
16%
Analgesic
16%
Phosphorylation Sites
16%
Fentanyl
16%
Inflammatory Pain
16%
Antinociception
16%
Protein Kinase C Activation
16%
Cross-regulation
16%
Neurokinin-1 Receptor (NK1R)
16%
Neurokinin-1
16%
Endocytic Recycling
16%
Direct Modification
16%
Physiological Pathways
16%
Neuroscience
μ-Opioid Receptor
100%
Substance P
100%
Receptor
42%
Protein Kinase C
28%
Trigeminal Ganglion
28%
Agonist
14%
Neurotransmitter
14%
Morphine
14%
Duragesic
14%
Fentanyl
14%