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Activation of Mu opioid receptors inhibits microglial cell chemotaxis
Chun C. Chao
, Shuxian Hu
, Katherine B. Shark
, Wen Sheng
, Genya Gekker
, Phillip K. Peterson
Medicine - Infectious Disease and International Medicine
Environmental Health Sciences
Research output
:
Contribution to journal
›
Article
›
peer-review
102
Scopus citations
Overview
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Keyphrases
μ-opioid Receptor
100%
Microglial Cells
100%
Cell Chemotaxis
100%
Morphine
28%
Microglia
28%
IC50 Value
28%
Upstream Open Reading Frame (uORF)
28%
Cell Culture
14%
Inflammation
14%
Complementary DNA (cDNA)
14%
Human Brain
14%
Ligand-receptor Binding
14%
Opiates
14%
Macrophage Function
14%
Resident Macrophages
14%
Dose Effect
14%
DAMGO
14%
Cell Support
14%
Chemotaxis
14%
Directed Migration
14%
Human Fetus
14%
Primer Set
14%
Human Brain Tissue
14%
Anti-inflammatory Role
14%
Neuroscience
μ-Opioid Receptor
100%
Chemotaxis
100%
Microglia
100%
Morphine
25%
Macrophage
25%
Open Reading Frame
25%
Human Brain
25%
Anti-Inflammatory
12%
Complementary DNA
12%
DAMGO
12%
Complement Component C5a
12%
Opiate
12%
Cell Culture
12%
Messenger RNA
12%