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Brain Research. Molecular Brain Research
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November 20, 2003
Phosphorylation of Gbeta is augmented by chronic morphine and enhances Gbetagamma stimulation of adenylyl cyclase activity
Sumita Chakrabarti, Alan R Gintzler
Life Sciences
|
April 4, 2006
Post-opioid receptor adaptations to chronic morphine; altered functionality and associations of signaling molecules
Alan R Gintzler, Sumita Chakrabarti
Molecular Pharmacology
|
June 20, 2007
Phosphorylation of Galphas influences its association with the micro-opioid receptor and is modulated by long-term morphine exposure
Sumita Chakrabarti, Alan R Gintzler
Novartis Foundation Symposium
|
October 8, 2004
Chronic morphine-induced plasticity among signalling molecules
Alan R Gintzler, Sumita Chakrabarti
The Journal of Pharmacology and Experimental Therapeutics
|
March 21, 2008
The ambiguities of opioid tolerance mechanisms: barriers to pain therapeutics or new pain therapeutic possibilities
Alan R Gintzler, Sumita Chakrabarti
The Journal of Pharmacology and Experimental Therapeutics
|
January 26, 2010
Subcellular localization of mu-opioid receptor G(s) signaling
Sumita Chakrabarti, Andrew Chang, Alan R Gintzler
Brain Research. Molecular Brain Research
|
May 24, 2005
Chronic morphine acts via a protein kinase Cgamma-G(beta)-adenylyl cyclase complex to augment phosphorylation of G(beta) and G(betagamma) stimulatory adenylyl cyclase signaling
Sumita Chakrabarti, Annette Regec, Alan R Gintzler
Molecular Pharmacology
|
November 30, 2007
Plasticity of adenylyl cyclase-related signaling sequelae after long-term morphine treatment
Michael Shy, Sumita Chakrabarti, Alan R Gintzler
Brain Research. Molecular Brain Research
|
April 29, 2005
Biochemical demonstration of mu-opioid receptor association with Gsalpha: enhancement following morphine exposure
Sumita Chakrabarti, Annette Regec, Alan R Gintzler
Brain Research
|
May 6, 2004
Chronic morphine-induced loss of the facilitative interaction between vasoactive intestinal polypeptide and delta-opioid: involvement of protein kinase C and phospholipase Cbetas
Nai-Jiang Liu, Sumita Chakrabarti, Alan R Gintzler
Page
of 2
Search research articles
Search
Showing results (1-10 of 20) with videos related to
Sort By:
Page
of 2
Brain Research. Molecular Brain Research
|
November 20, 2003
Phosphorylation of Gbeta is augmented by chronic morphine and enhances Gbetagamma stimulation of adenylyl cyclase activity
Sumita Chakrabarti, Alan R Gintzler
Life Sciences
|
April 4, 2006
Post-opioid receptor adaptations to chronic morphine; altered functionality and associations of signaling molecules
Alan R Gintzler, Sumita Chakrabarti
Molecular Pharmacology
|
June 20, 2007
Phosphorylation of Galphas influences its association with the micro-opioid receptor and is modulated by long-term morphine exposure
Sumita Chakrabarti, Alan R Gintzler
Novartis Foundation Symposium
|
October 8, 2004
Chronic morphine-induced plasticity among signalling molecules
Alan R Gintzler, Sumita Chakrabarti
The Journal of Pharmacology and Experimental Therapeutics
|
March 21, 2008
The ambiguities of opioid tolerance mechanisms: barriers to pain therapeutics or new pain therapeutic possibilities
Alan R Gintzler, Sumita Chakrabarti
The Journal of Pharmacology and Experimental Therapeutics
|
January 26, 2010
Subcellular localization of mu-opioid receptor G(s) signaling
Sumita Chakrabarti, Andrew Chang, Alan R Gintzler
Brain Research. Molecular Brain Research
|
May 24, 2005
Chronic morphine acts via a protein kinase Cgamma-G(beta)-adenylyl cyclase complex to augment phosphorylation of G(beta) and G(betagamma) stimulatory adenylyl cyclase signaling
Sumita Chakrabarti, Annette Regec, Alan R Gintzler
Molecular Pharmacology
|
November 30, 2007
Plasticity of adenylyl cyclase-related signaling sequelae after long-term morphine treatment
Michael Shy, Sumita Chakrabarti, Alan R Gintzler
Brain Research. Molecular Brain Research
|
April 29, 2005
Biochemical demonstration of mu-opioid receptor association with Gsalpha: enhancement following morphine exposure
Sumita Chakrabarti, Annette Regec, Alan R Gintzler
Brain Research
|
May 6, 2004
Chronic morphine-induced loss of the facilitative interaction between vasoactive intestinal polypeptide and delta-opioid: involvement of protein kinase C and phospholipase Cbetas
Nai-Jiang Liu, Sumita Chakrabarti, Alan R Gintzler
Page
of 2