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Brain Research|February 14, 1994
Antagonists at excitatory opioid receptors on sensory neurons in culture increase potency and specificity of opiate analgesics and attenuate development of tolerance/dependenceK F Shen, S M CrainBrain Research|May 23, 1997
Ultra-low doses of naltrexone or etorphine increase morphine's antinociceptive potency and attenuate tolerance/dependence in miceK F Shen, S M CrainProceedings of the National Academy of Sciences of the United States of America|November 7, 1995
Ultra-low concentrations of naloxone selectively antagonize excitatory effects of morphine on sensory neurons, thereby increasing its antinociceptive potency and attenuating tolerance/dependence during chronic cotreatmentS M Crain, K F ShenBrain Research|October 1, 1981
Preferential growth of neurites from isolated fetal mouse dorsal root ganglia in relation to specific regions of co-cultured spinal cord explantsE R Peterson, S M CrainBrain Research|February 1, 1985
Projections of growth-cone-bearing fibers of retinal ganglion cells within co-cultured tectal explants: early branching depends on age of target tissueD R Friedlander, S M CrainThe Journal of Pharmacology and Experimental Therapeutics|January 1, 1992
After GM1 ganglioside treatment of sensory neurons naloxone paradoxically prolongs the action potential but still antagonizes opioid inhibitionS M Crain, K F ShenScience (New York, N.Y.)|April 14, 1972
Organotypic bioelectric activity in cultured reaggregates of dissociated rodent brain cellsS M Crain, M B BornsteinTrends in Pharmacological Sciences|October 24, 1998
Modulation of opioid analgesia, tolerance and dependence by Gs-coupled, GM1 ganglioside-regulated opioid receptor functionsS M Crain, K F ShenAnnals of the New York Academy of Sciences|July 21, 1998
GM1 ganglioside-induced modulation of opioid receptor-mediated functionsS M Crain, K F ShenPageof 24