| 1 |
Neocortical epileptogenesis in vitro: studies with N-methyl-D-aspartate, phencyclidine, sigma and dextromethorphan receptor ligands.  |
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| 2 |
Dextromethorphan An Overview of Safety Issues  |
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| 3 |
ANESTHESIOLOGY  |
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| 4 |
Dextromethorphan protects against cerebral injury following transient, but not permanent, focal ischemia in rats  |
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| 5 |
Oral administration of dextromethorphan does not produce neuronal vacuolation in the rat brain  |
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| 6 |
A novel effect of an opioid receptor antagonist, naloxone, on the production of reactive oxygen species by microglia: a study by electron paramagnetic resonance spectroscopy  |
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| 7 |
Non-competitive N-methyl-D-aspartate antagonists protect against sound-induced seizures in DBA/2 mice  |
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| 8 |
Chatterjie, N., Alexander, G. J., Sechzer, J. A., and Lieberman, K. W., Prevention of cocaine-induced hyperactivity by a naloxone isomer with no opiate antagonist activity. Neurochem. Res., 21, 691-693 (1996). |
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| 9 |
Cerebral ischemia/reperfusion injury in rat brain: effects of naloxone  |
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| 10 |
Effect of morphine and naloxone on priming-induced audiogenic seizures in BALB/c mice.  |
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| 11 |
Naloxone Blockade of Myocardial Ischemic Preconditioning is Stereoselective  |
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| 12 |
Choi, D. W., Dextrorphan and dextromethorphan attenuate glutamate neurotoxicity. Brain Res., 403, 333-336 (1987). |
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| 13 |
Recent Trends of Drug Abuse and Drug‐Associated Deaths in Korea  |
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| 14 |
Selective depression of [formula omitted] by dextrorphan in the hippocampal slice in rat  |
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| 15 |
Abuse of Dextromethorphan  |
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| 16 |
High-affinity dextromethorphan binding sites in guinea pig brain. II. Competition experiments.  |
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| 17 |
Desai, S., Aldea, D., Daneels, E., Soliman, M., Braksmajer,A. S., and Kopes-Kerr, C. P., Chronic addiction to dextromethorphan cough syrup: a case report. J. Am. Board Fam. Med., 19, 320-323 (2006). |
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| 18 |
Intracellular and extracellular roles of S100 proteins.  |
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| 19 |
Kindled rats are more sensitive than non-kindled rats to the behavioural effects of combined treatment with MK-801 and valproate  |
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| 20 |
Echevarria, E., Robles, L., and Tortella, F. C., Differential profiles of putative dextromrthorphan sigma ligands in experimental seizure models. FASEB J., 4, A331 (1990). |
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| 21 |
Dextromethorphan, a common antitussive, reduces kindled amygdala seizures in the rat  |
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| 22 |
Dextromethorphan inhibits NMDA-induced convulsions  |
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| 23 |
Identification and initial characterization of high-affinity [3H]dextrorphan binding sites in rat brain.  |
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| 24 |
Microglial activation‐mediated delayed and progressive degeneration of rat nigral dopaminergic neurons: relevance to Parkinson's disease  |
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| 25 |
Critical role of microglial NADPH oxidase-derived free radicals in the in vitro MPTP model of Parkinson's disease.  |
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| 26 |
George, C. P., Goldberg, M. P., Choi, D. W., and Steinberg,G. K., Dextromethorphan reduces neocortical ischemic neuronal damage in vivo. Brain Res., 440, 375-379 (1988). |
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| 27 |
Comparative effects of dextromethorphan and dextrorphan on morphine, methamphetamine, and nicotine self-administration in rats  |
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| 28 |
Induction of heat shock protein HSP-70 in rat retrosplenial cortex following administration of dextromethorphan  |
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| 29 |
Discriminative stimulus effects of dextrorphan in pigeons.  |
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| 30 |
Phencyclidine-like discriminative effects of opioids in the rat.  |
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| 31 |
Discriminative stimulus effects of dextromethorphan in the rat.  |
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| 32 |
Studies in the (+)-morphinan series. 5. Synthesis and biological properties of (+)-naloxone.  |
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| 33 |
Dual effects of dextromethorphan on cocaine-induced conditioned place preference in mice  |
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| 34 |
Activation of astrocytes during epileptogenesis in the absence of neuronal degeneration  |
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| 35 |
Kim, H. C. and Jhoo, W. K., Alterations in motor activity induced by high dose oral administration of dextromethorphan throughout two consecutive generations in mice. Arch. Pharm. Res., 18, 146-152 (1995). |
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| 36 |
Kim, H. C., Jhoo, W. K., Kwan, M. S., and Hong, J. S., Effects of chronic dextromethorphan administration on the cellular immune responses in mice. Arch. Pharm. Res., 18, 267-270 (1995). |
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| 37 |
The effects of dextromethorphan on kainic acid-induced seizures in the rat.  |
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| 38 |
Dextromethorphan alters the reinforcing effect of cocaine in the rat.  |
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| 39 |
Dextromethorphan blocks opioid peptide gene expression in the rat hippocampus induced by kainic acid  |
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| 40 |
Dextromethorphan modulates the AP-1 DNA-binding activity induced by kainic acid  |
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| 41 |
Dextromethorphan affects cocaine-mediated behavioral pattern in parallel with a long-lasting Fos-related antigen-immunoreactivity  |
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| 42 |
Kim, H. C., Ko, K. H., Kim, W. K., Shin, E. J., Kang, K. S.,Shin, C. Y., and Jhoo, W. K., Effects of dextromethorphan on the seizures induced by kainate and the calcium channel agonist BAY k-8644: comparison with the effects of dextrorphan. Behav. Brain Res., 120, 169-175 (2001b). |
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| 43 |
Anticonvulsant effects of new morphinan derivatives  |
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| 44 |
Metabolism to dextrorphan is not essential for dextromethorphan's anticonvulsant activity against kainate in mice  |
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| 45 |
New morphinan derivatives with negligible psychotropic effects attenuate convulsions induced by maximal electroshock in mice  |
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| 46 |
Role of calcium in sigma-mediated neuroprotection in rat primary cortical neurons  |
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| 47 |
Endogenous opioid system in developing normal and jimpy oligodendrocytes: mu and kappa opioid receptors mediate differential mitogenic and growth responses.  |
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| 48 |
Molecular biology and pharmacology of cloned opioid receptors.  |
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| 49 |
Morphine enhances amygdaloid seizures and increases inter-ictal spike frequency in kindled rats  |
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| 50 |
Evaluation of dextromethorphan and carbetapentane as anticonvulsants and antagonists in mice  |
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| 51 |
Naloxone protects rat dopaminergic neurons against inflammatory damage through inhibition of microglia activation and superoxide generation.  |
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| 52 |
Systemic infusion of naloxone reduces degeneration of rat substantia nigral dopaminergic neurons induced by intranigral injection of lipopolysaccharide.  |
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| 53 |
Inhibition by naloxone stereoisomers of beta-amyloid peptide (1-42)-induced superoxide production in microglia and degeneration of cortical and mesencephalic neurons.  |
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| 54 |
Responses to NMDA receptor antagonists altered by epileptogenesis  |
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| 55 |
Dextromethorphan attenuates hypoxia-induced neuronal dysfunction in rat neocortical slices  |
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| 56 |
Phencyclidine receptors in rat brain cortex  |
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| 57 |
Morphinans attenuate cortical neuronal injury induced by glucose deprivation in vitro  |
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| 58 |
Interaction of dextrorotatory opioids with phencyclidine recognition sites in rat brain membranes  |
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| 59 |
Dextromethorphan blocks N-methyl-D-aspartate-induced currents and voltage-operated inward currents in cultured cortical neurons  |
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| 60 |
Synthesis and evaluation of 3-substituted 17-methylmorphinan analogs as potential anticonvulsant agents.  |
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| 61 |
Pathological Changes Induced in Cerebrocortical Neurons by Phencyclidine and Related Drugs  |
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| 62 |
Inflammatory mechanisms associated with brain damage induced by kainic acid with special reference to the interleukin‐1 system  |
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| 63 |
Dextromethorphan reduces intravenous cocaine self-administration in the rat  |
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| 64 |
Microglial NADPH oxidase is a novel target for femtomolar neuroprotection against oxidative stress.  |
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| 65 |
Quirion, R., Bowen, W. D., Itzhak, Y., Junien, J. L.,Musacchio, J. M., Rothman, R. B., Su, T. P., Tam, S. W.,and Taylor, D. P., A proposal for the classification of sigma binding sites. Trends Pharmacol. Sci., 13, 85-86 (1992). |
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| 66 |
Inflammatory Response and Glia Activation in Developing Rat Hippocampus after Status Epilepticus  |
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| 67 |
Glia activation and cytokine increase in rat hippocampus by kainic acid-induced status epilepticus during postnatal development  |
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| 68 |
Antiepileptic drugs: pharmacological mechanisms and clinical efficacy with consideration of promising developmental stage compounds.  |
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| 69 |
Roy, S. and Loh, H. H., Effects of opioids on the immune system. Neurochem. Res., 21, 1375-1386 (1996). |
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| 70 |
Molecular pharmacology of the opioid receptors  |
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| 71 |
Psychopharmacological treatment of social phobia; a double blind placebo controlled study with fluvoxamine.  |
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| 72 |
Shin, E. J., Nabeshima, T., Lee, P. H., Kim, W. K., Ko, K. H.,Jhoo, J. H., Jhoo, W. K., Cha, J. Y., and Kim, H. C., Dimemorfan prevents seizures induced by the L-type calcium channel activator BAY k-8644 in mice. Behav. Brain Res.,151, 267-276 (2004). |
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| 73 |
The dextromethorphan analog dimemorfan attenuates kainate-induced seizures via sigma1 receptor activation: comparison with the effects of dextromethorphan.  |
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| 74 |
Dextromethorphan attenuates trimethyltin-induced neurotoxicity via σ 1 receptor activation in rats  |
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| 75 |
Neuropsychotoxicity of Abused Drugs : Potential of Dextromethorphan and Novel Neuroprotective Analogs of Dextromethorphan With Improved Safety Profiles in Terms of Abuse and Neuroprotective Effects  |
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| 76 |
Naloxone-induced electrographic seizures in the primate.  |
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| 77 |
Glial Activation Links Early‐Life Seizures and Long‐Term Neurologic Dysfunction: Evidence Using a Small Molecule Inhibitor of Proinflammatory Cytokine Upregulation  |
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| 78 |
Dextromethorphan alters cerebral blood flow and protects against cerebral injury following focal ischemia  |
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| 79 |
Effects of dextromethorphan on dopamine release in the nucleus accumbens: Interactions with morphine  |
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| 80 |
Effects of Dextromethorphan, a Nonopioid Antitussive, on Development and Expression of Amygdaloid Kindled Seizures  |
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| 81 |
Dextromethorphan and carbetapentane: centrally acting non-opioid antitussive agents with novel anticonvulsant properties  |
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| 82 |
Tortella, F. C., Martin, D. A., Allot, C. P., Steel, J. A.,Blackburn, T. P., Loveday, B. E., and Russell, N. J.,Dextromethorphan attenuates post-ischemic hypoperfusion following incomplete global ischemia in the anesthetized rat. Brain Res., 482, 179-183 (1989a). |
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| 83 |
Tortella, F. C., Pellicano, M., and Bowery, N. G., Dextromethorphan and neuromodulation: old drug coughs up new activities. Trends Pharmacol. Sci., 10, 501-507 (1989b). |
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| 84 |
Novel anticonvulsant analogs of dextromethorphan: improved efficacy, potency, duration and side-effect profile.  |
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| 85 |
Neuroprotection (focal ischemia) and neurotoxicity (electroencephalographic) studies in rats with AHN649, a 3-amino analog of dextromethorphan and low-affinity N-methyl-D-aspartate antagonist.  |
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| 86 |
Dextromethorphan: cellular effects reducing neuronal hyperactivity.  |
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| 87 |
Effects of morphine and naloxone on pilocarpine-induced convulsions in rats  |
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| 88 |
Dextromethorphan prevents the diethyldithiocarbamate enhancement of 1-methyl-4-phenyl-1,2,3,6-tetrahydropyridine toxicity in mice  |
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| 89 |
Brain Inflammation in Epilepsy: Experimental and Clinical Evidence  |
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| 90 |
Interleukin-1beta Enhances NMDA Receptor-Mediated Intracellular Calcium Increase through Activation of the Src Family of Kinases  |
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| 91 |
Increased susceptibility of S100B transgenic mice to perinatal hypoxia‐ischemia  |
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| 92 |
Massive dextromethorphan ingestion and abuse  |
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| 93 |
Effects of route of administration on dextromethorphan pharmacokinetics and behavioral response in the rat.  |
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| 94 |
Co-administration of dextromethorphan with methamphetamine attenuates methamphetamine-induced rewarding and behavioral sensitization.  |
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| 95 |
Attenuation of the stimulant and convulsant effects of cocaine by 17-substituted-3-hydroxy and 3-alkoxy derivatives of dextromethorphan.  |
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| 96 |
Neuroprotective effect of dextromethorphan in the MPTP Parkinson's disease model: role of NADPH oxidase.  |
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| 97 |
3-hydroxymorphinan is neurotrophic to dopaminergic neurons and is also neuroprotective against LPS-induced neurotoxicity.  |
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| 98 |
3-Hydroxymorphinan, a metabolite of dextromethorphan, protects nigrostriatal pathway against MPTP-elicited damage both in vivo and in vitro.  |
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| 99 |
Computer-assisted modeling of multiple dextromethorphan and sigma binding sites in guinea pig brain.  |
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