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Cannabinoid physiology and pharmacology: 30 years of progress
A. Howlett,
C. Breivogel,
S. Childers,
S. Deadwyler,
R. Hampson,
L. Porrino
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9 |
2004 |
9 🐬
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In vitro autoradiography of receptor-activated G proteins in rat brain by agonist-stimulated guanylyl 5'-[gamma-[35S]thio]-triphosphate binding.
L. J. Sim,
D. Selley,
S. Childers
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8 |
1995 |
8 🐢
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Immunohistochemical mapping of enkephalin containing cell bodies, fibers and nerve terminals in the brain stem of the rat
G. Uhl,
R. Goodman,
M. Kuhar,
S. Childers,
S. Snyder
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8 |
1979 |
8 🐬
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Opioid receptor-coupled second messenger systems
S. Childers
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8 |
1991 |
8 🦁
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Effects of Chronic Treatment with Δ9-Tetrahydrocannabinol on Cannabinoid-Stimulated [35S]GTPγS Autoradiography in Rat Brain
L. J. Sim,
R. Hampson,
S. Deadwyler,
S. Childers
|
8 |
1996 |
8 🐢
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Chronic ▵9‐Tetrahydrocannabinol Treatment Produces a Time‐Dependent Loss of Cannabinoid Receptors and Cannabinoid Receptor‐Activated G Proteins in Rat Brain
C. Breivogel,
S. Childers,
S. Deadwyler,
R. Hampson,
L. Vogt,
L. Sim‐Selley
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8 |
1999 |
8 🐬
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An opiate-receptor gene family reunion
G. Uhl,
S. Childers,
G. Pasternak
|
8 |
1994 |
8 🐬
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Cannabinoids modulate voltage sensitive potassium A-current in hippocampal neurons via a cAMP-dependent process.
S. Deadwyler,
R. Hampson,
J. Mu,
A. Whyte,
S. Childers
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7 |
1995 |
7 🐢
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mu-Opioid receptor-stimulated guanosine-5'-O-(gamma-thio)-triphosphate binding in rat thalamus and cultured cell lines: signal transduction mechanisms underlying agonist efficacy.
D. Selley,
L. J. Sim,
Ruoyo Xiao,
Qixu Liu,
S. Childers
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7 |
1997 |
7 🐢
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The Functional Neuroanatomy of Brain Cannabinoid Receptors
C. Breivogel,
S. Childers
|
7 |
1998 |
7 🐢
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Differential Regulation by Guanine Nucleotides of Opiate Agonist and Antagonist Receptor Interactions
S. Childers,
S. Snyder
|
7 |
1980 |
7 🦁
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