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Rzemieślnik Piąty Więcej kappa opioid inhibition of morphine and cocaine self administration in rats Leniwy Pozwolenie próg

Fentanyl vapor self-administration model in mice to study opioid addiction  | Science Advances
Fentanyl vapor self-administration model in mice to study opioid addiction | Science Advances

Hot topics in opioid pharmacology: mixed and biased opioids - British  Journal of Anaesthesia
Hot topics in opioid pharmacology: mixed and biased opioids - British Journal of Anaesthesia

Systemic nicotine enhances opioid self-administration and modulates the  formation of opioid-associated memories partly through actions within the  insular cortex | Scientific Reports
Systemic nicotine enhances opioid self-administration and modulates the formation of opioid-associated memories partly through actions within the insular cortex | Scientific Reports

Critical Assessment of G Protein-Biased Agonism at the μ-Opioid Receptor:  Trends in Pharmacological Sciences
Critical Assessment of G Protein-Biased Agonism at the μ-Opioid Receptor: Trends in Pharmacological Sciences

The Role of Dynorphin and the Kappa Opioid Receptor in the Symptomatology  of Schizophrenia: A Review of the Evidence - Biological Psychiatry
The Role of Dynorphin and the Kappa Opioid Receptor in the Symptomatology of Schizophrenia: A Review of the Evidence - Biological Psychiatry

Frontiers | Escalated Oxycodone Self-Administration and Punishment:  Differential Expression of Opioid Receptors and Immediate Early Genes in  the Rat Dorsal Striatum and Prefrontal Cortex
Frontiers | Escalated Oxycodone Self-Administration and Punishment: Differential Expression of Opioid Receptors and Immediate Early Genes in the Rat Dorsal Striatum and Prefrontal Cortex

Effects of Mixed-Action κ/μ Opioids on Cocaine Self-Administration and  Cocaine Discrimination by Rhesus Monkeys | Neuropsychopharmacology
Effects of Mixed-Action κ/μ Opioids on Cocaine Self-Administration and Cocaine Discrimination by Rhesus Monkeys | Neuropsychopharmacology

Kappa Opioid Receptors Regulate Stress-Induced Cocaine Seeking and Synaptic  Plasticity - ScienceDirect
Kappa Opioid Receptors Regulate Stress-Induced Cocaine Seeking and Synaptic Plasticity - ScienceDirect

Morphine self-administration (MSA) is increased in irradiated rats. (a)...  | Download Scientific Diagram
Morphine self-administration (MSA) is increased in irradiated rats. (a)... | Download Scientific Diagram

Kappa Opioid Receptors Regulate Stress-Induced Cocaine Seeking and Synaptic  Plasticity - ScienceDirect
Kappa Opioid Receptors Regulate Stress-Induced Cocaine Seeking and Synaptic Plasticity - ScienceDirect

Interactions between Kappa Opioid Agonists and Cocaine: Preclinical Studies  - MELLO - 2000 - Annals of the New York Academy of Sciences - Wiley Online  Library
Interactions between Kappa Opioid Agonists and Cocaine: Preclinical Studies - MELLO - 2000 - Annals of the New York Academy of Sciences - Wiley Online Library

Locomotor activity: A distinctive index in morphine self-administration in  rats | PLOS ONE
Locomotor activity: A distinctive index in morphine self-administration in rats | PLOS ONE

Molecules | Free Full-Text | Kappa Opioid Receptor Agonist Mesyl Sal B  Attenuates Behavioral Sensitization to Cocaine with Fewer Aversive  Side-Effects than Salvinorin A in Rodents | HTML
Molecules | Free Full-Text | Kappa Opioid Receptor Agonist Mesyl Sal B Attenuates Behavioral Sensitization to Cocaine with Fewer Aversive Side-Effects than Salvinorin A in Rodents | HTML

Biased agonists of the kappa opioid receptor suppress pain and itch without  causing sedation or dysphoria | Science Signaling
Biased agonists of the kappa opioid receptor suppress pain and itch without causing sedation or dysphoria | Science Signaling

Frontiers | Cebranopadol, a Mixed Opioid Agonist, Reduces Cocaine Self- administration through Nociceptin Opioid and Mu Opioid Receptors
Frontiers | Cebranopadol, a Mixed Opioid Agonist, Reduces Cocaine Self- administration through Nociceptin Opioid and Mu Opioid Receptors

Self-Administered Heroin and Cocaine Combinations in the Rat: Additive  Reinforcing Effects—Supra-Additive Effects on Nucleus Accumbens  Extracellular Dopamine | Neuropsychopharmacology
Self-Administered Heroin and Cocaine Combinations in the Rat: Additive Reinforcing Effects—Supra-Additive Effects on Nucleus Accumbens Extracellular Dopamine | Neuropsychopharmacology

κ Opioid Receptor Antagonism and Prodynorphin Gene Disruption Block  Stress-Induced Behavioral Responses | Journal of Neuroscience
κ Opioid Receptor Antagonism and Prodynorphin Gene Disruption Block Stress-Induced Behavioral Responses | Journal of Neuroscience

Frontiers | Crosstalk Between Kappa Opioid and Dopamine Systems in  Compulsive Behaviors
Frontiers | Crosstalk Between Kappa Opioid and Dopamine Systems in Compulsive Behaviors

Signaling Properties of Structurally Diverse Kappa Opioid Receptor Ligands:  Toward in Vitro Models of in Vivo Responses | ACS Chemical Neuroscience
Signaling Properties of Structurally Diverse Kappa Opioid Receptor Ligands: Toward in Vitro Models of in Vivo Responses | ACS Chemical Neuroscience

Frontiers | The Kappa Opioid Receptor: From Addiction to Depression, and  Back
Frontiers | The Kappa Opioid Receptor: From Addiction to Depression, and Back

Deep brain stimulation of the nucleus accumbens shell attenuates cocaine  withdrawal but increases cocaine self-administration, cocaine-induced  locomotor activity, and GluR1/GluA1 in the central nucleus of the amygdala  in male cocaine-dependent rats -
Deep brain stimulation of the nucleus accumbens shell attenuates cocaine withdrawal but increases cocaine self-administration, cocaine-induced locomotor activity, and GluR1/GluA1 in the central nucleus of the amygdala in male cocaine-dependent rats -

Molecules | Free Full-Text | Kappa Opioid Receptor Agonist Mesyl Sal B  Attenuates Behavioral Sensitization to Cocaine with Fewer Aversive  Side-Effects than Salvinorin A in Rodents | HTML
Molecules | Free Full-Text | Kappa Opioid Receptor Agonist Mesyl Sal B Attenuates Behavioral Sensitization to Cocaine with Fewer Aversive Side-Effects than Salvinorin A in Rodents | HTML