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Frontiers | Delta Opioid Receptor Signaling Promotes Resilience to Stress  Under the Repeated Social Defeat Paradigm in Mice
Frontiers | Delta Opioid Receptor Signaling Promotes Resilience to Stress Under the Repeated Social Defeat Paradigm in Mice

Ginsenoside Re protects methamphetamine-induced dopaminergic neurotoxicity  in mice via upregulation of dynorphin-mediated κ-opioid receptor and  downregulation of substance P-mediated neurokinin 1 receptor | Journal of  Neuroinflammation | Full Text
Ginsenoside Re protects methamphetamine-induced dopaminergic neurotoxicity in mice via upregulation of dynorphin-mediated κ-opioid receptor and downregulation of substance P-mediated neurokinin 1 receptor | Journal of Neuroinflammation | Full Text

Ginsenoside Re protects methamphetamine-induced dopaminergic neurotoxicity  in mice via upregulation of dynorphin-mediated κ-opioid receptor and  downregulation of substance P-mediated neurokinin 1 receptor | Journal of  Neuroinflammation | Full Text
Ginsenoside Re protects methamphetamine-induced dopaminergic neurotoxicity in mice via upregulation of dynorphin-mediated κ-opioid receptor and downregulation of substance P-mediated neurokinin 1 receptor | Journal of Neuroinflammation | Full Text

Molecular dynamics of fentanyl bound to μ-opioid receptor | SpringerLink
Molecular dynamics of fentanyl bound to μ-opioid receptor | SpringerLink

Pain and Poppies: The Good, the Bad, and the Ugly of Opioid Analgesics |  Journal of Neuroscience
Pain and Poppies: The Good, the Bad, and the Ugly of Opioid Analgesics | Journal of Neuroscience

Κ-opioid receptor - an overview | ScienceDirect Topics
Κ-opioid receptor - an overview | ScienceDirect Topics

The G protein-first activation mechanism of opioid receptors by Gi protein  and agonists | QRB Discovery | Cambridge Core
The G protein-first activation mechanism of opioid receptors by Gi protein and agonists | QRB Discovery | Cambridge Core

Hypothalamic kappa opioid receptor mediates both diet‐induced and melanin  concentrating hormone–induced liver damage through inflammation and  endoplasmic reticulum stress - Imbernon - 2016 - Hepatology - Wiley Online  Library
Hypothalamic kappa opioid receptor mediates both diet‐induced and melanin concentrating hormone–induced liver damage through inflammation and endoplasmic reticulum stress - Imbernon - 2016 - Hepatology - Wiley Online Library

Dose-Related Behavioral, Subjective, Endocrine, and Psychophysiological  Effects of the κ Opioid Agonist Salvinorin A in Humans - Biological  Psychiatry
Dose-Related Behavioral, Subjective, Endocrine, and Psychophysiological Effects of the κ Opioid Agonist Salvinorin A in Humans - Biological Psychiatry

Determination of μ-, δ- and κ-opioid receptors in forebrain cortex of rats  exposed to morphine for 10 days: Comparison with animals after 20 days of  morphine withdrawal | PLOS ONE
Determination of μ-, δ- and κ-opioid receptors in forebrain cortex of rats exposed to morphine for 10 days: Comparison with animals after 20 days of morphine withdrawal | PLOS ONE

κ receptor | Opioid receptors | IUPHAR/BPS Guide to PHARMACOLOGY
κ receptor | Opioid receptors | IUPHAR/BPS Guide to PHARMACOLOGY

Kappa opioid receptor signaling in the brain: Circuitry and implications  for treatment - ScienceDirect
Kappa opioid receptor signaling in the brain: Circuitry and implications for treatment - ScienceDirect

Structural Assessment of Agonist Efficacy in the μ-Opioid Receptor: Morphine  and Fentanyl Elicit Different Activation Patterns | Journal of Chemical  Information and Modeling
Structural Assessment of Agonist Efficacy in the μ-Opioid Receptor: Morphine and Fentanyl Elicit Different Activation Patterns | Journal of Chemical Information and Modeling

Effect of perioperative opioids on cancer recurrence: a hypothesis | Future  Oncology
Effect of perioperative opioids on cancer recurrence: a hypothesis | Future Oncology

Hypothalamic kappa opioid receptor mediates both diet‐induced and melanin  concentrating hormone–induced liver damage through inflammation and  endoplasmic reticulum stress - Imbernon - 2016 - Hepatology - Wiley Online  Library
Hypothalamic kappa opioid receptor mediates both diet‐induced and melanin concentrating hormone–induced liver damage through inflammation and endoplasmic reticulum stress - Imbernon - 2016 - Hepatology - Wiley Online Library

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

Asymmetric Syntheses of (+)- and (−)-Collybolide Enable Reevaluation of  kappa-Opioid Receptor Agonism | ACS Central Science
Asymmetric Syntheses of (+)- and (−)-Collybolide Enable Reevaluation of kappa-Opioid Receptor Agonism | ACS Central Science

κ-opioid receptor - Wikipedia
κ-opioid receptor - Wikipedia

Kappa - The Physiological Mechanisms of Opioid Receptors
Kappa - The Physiological Mechanisms of Opioid Receptors

The Kappa Opioid Receptor and the Sleep of Reason: Cortico-Subcortical  Imbalance Following Salvinorin-A
The Kappa Opioid Receptor and the Sleep of Reason: Cortico-Subcortical Imbalance Following Salvinorin-A

Hypothalamic kappa opioid receptor mediates both diet‐induced and melanin  concentrating hormone–induced liver damage through inflammation and  endoplasmic reticulum stress - Imbernon - 2016 - Hepatology - Wiley Online  Library
Hypothalamic kappa opioid receptor mediates both diet‐induced and melanin concentrating hormone–induced liver damage through inflammation and endoplasmic reticulum stress - Imbernon - 2016 - Hepatology - Wiley Online Library

Brain Sciences | Free Full-Text | Brain Opioid Activity and Oxidative  Injury: Different Molecular Scenarios Connecting Celiac Disease and  Autistic Spectrum Disorder | HTML
Brain Sciences | Free Full-Text | Brain Opioid Activity and Oxidative Injury: Different Molecular Scenarios Connecting Celiac Disease and Autistic Spectrum Disorder | HTML

PDF) Antinociceptive and Antipruritic Effects of HSK21542, a  Peripherally-Restricted Kappa Opioid Receptor Agonist, in Animal Models of  Pain and Itch
PDF) Antinociceptive and Antipruritic Effects of HSK21542, a Peripherally-Restricted Kappa Opioid Receptor Agonist, in Animal Models of Pain and Itch