Agency
National Institute of Health (NIH)
Institute
National Institute on Drug Abuse (NIDA)
Type
Research Project (R01)
Project #
1R01DA009293-01A2
Application #
2013277
Study Section
Special Emphasis Panel (SRCD (11))
Project Start
1996-09-30
Project End
1999-08-31
Budget Start
1996-09-30
Budget End
1997-08-31
Support Year
1
Fiscal Year
1996
Total Cost
Indirect Cost
Name
University of Minnesota Twin Cities
Department
Pharmacology
Type
Schools of Medicine
DUNS #
168559177
City
Minneapolis
State
MN
Country
United States
Zip Code
55455
Usachev, Yuriy M; DeMarco, Steven J; Campbell, Colin et al. (2002) Bradykinin and ATP accelerate Ca(2+) efflux from rat sensory neurons via protein kinase C and the plasma membrane Ca(2+) pump isoform 4. Neuron 33:113-22
Usachev, Y M; Toutenhoofd, S L; Goellner, G M et al. (2001) Differentiation induces up-regulation of plasma membrane Ca(2+)-ATPase and concomitant increase in Ca(2+) efflux in human neuroblastoma cell line IMR-32. J Neurochem 76:1756-65
Kim, D J; Thayer, S A (2000) Activation of CB1 cannabinoid receptors inhibits neurotransmitter release from identified synaptic sites in rat hippocampal cultures. Brain Res 852:398-405
Usachev, Y M; Khammanivong, A; Campbell, C et al. (2000) Particle-mediated gene transfer to rat neurons in primary culture. Pflugers Arch 439:730-8
Usachev, Y M; Thayer, S A (1999) Controlling the urge for a Ca(2+) surge: all-or-none Ca(2+) release in neurons. Bioessays 21:743-50
Shen, M; Thayer, S A (1999) Delta9-tetrahydrocannabinol acts as a partial agonist to modulate glutamatergic synaptic transmission between rat hippocampal neurons in culture. Mol Pharmacol 55:8-13
Yoon, S H; Lo, T M; Loh, H H et al. (1999) Delta-opioid-induced liberation of Gbetagamma mobilizes Ca2+ stores in NG108-15 cells. Mol Pharmacol 56:902-8
Usachev, Y M; Thayer, S A (1999) Ca2+ influx in resting rat sensory neurones that regulates and is regulated by ryanodine-sensitive Ca2+ stores. J Physiol 519 Pt 1:115-30
Shen, M; Thayer, S A (1998) The cannabinoid agonist Win55,212-2 inhibits calcium channels by receptor-mediated and direct pathways in cultured rat hippocampal neurons. Brain Res 783:77-84
Shen, M; Thayer, S A (1998) Cannabinoid receptor agonists protect cultured rat hippocampal neurons from excitotoxicity. Mol Pharmacol 54:459-62

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