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Към истината яснота Общ kappa opioid receptor activates p38 боклук температура по същество

Down-regulation of kappa opioid receptor promotes ESCC proliferation,  invasion and metastasis via the PDK1-AKT signaling pathway | Cell  Communication and Signaling | Full Text
Down-regulation of kappa opioid receptor promotes ESCC proliferation, invasion and metastasis via the PDK1-AKT signaling pathway | Cell Communication and Signaling | Full Text

Dopaminergic Cellular and Circuit Contributions to Kappa Opioid Receptor  Mediated Aversion
Dopaminergic Cellular and Circuit Contributions to Kappa Opioid Receptor Mediated Aversion

Frontiers | Advances in Achieving Opioid Analgesia Without Side Effects
Frontiers | Advances in Achieving Opioid Analgesia Without Side Effects

Enhancing Remyelination through a Novel Opioid-Receptor Pathway | Journal  of Neuroscience
Enhancing Remyelination through a Novel Opioid-Receptor Pathway | Journal of Neuroscience

Kappa Opioid Receptor-Induced Aversion Requires p38 MAPK Activation in VTA  Dopamine Neurons | Journal of Neuroscience
Kappa Opioid Receptor-Induced Aversion Requires p38 MAPK Activation in VTA Dopamine Neurons | Journal of Neuroscience

Kappa Opioid Receptor Activation of p38 MAPK Is GRK3- and  Arrestin-dependent in Neurons and Astrocytes - ScienceDirect
Kappa Opioid Receptor Activation of p38 MAPK Is GRK3- and Arrestin-dependent in Neurons and Astrocytes - ScienceDirect

Peripheral Sensitization Increases Opioid Receptor Expression and Activation  by Crotalphine in Rats | PLOS ONE
Peripheral Sensitization Increases Opioid Receptor Expression and Activation by Crotalphine in Rats | PLOS ONE

IJMS | Free Full-Text | Is p38 MAPK Associated to Drugs of Abuse-Induced  Abnormal Behaviors?
IJMS | Free Full-Text | Is p38 MAPK Associated to Drugs of Abuse-Induced Abnormal Behaviors?

Nalfurafine is a G-protein biased agonist having significantly greater bias  at the human than rodent form of the kappa opioid receptor - ScienceDirect
Nalfurafine is a G-protein biased agonist having significantly greater bias at the human than rodent form of the kappa opioid receptor - ScienceDirect

Figure 5. | Stress-Induced p38 Mitogen-Activated Protein Kinase Activation  Mediates κ-Opioid-Dependent Dysphoria | Journal of Neuroscience
Figure 5. | Stress-Induced p38 Mitogen-Activated Protein Kinase Activation Mediates κ-Opioid-Dependent Dysphoria | Journal of Neuroscience

Dopaminergic cellular and circuit contributions to kappa opioid receptor  mediated aversion | Semantic Scholar
Dopaminergic cellular and circuit contributions to kappa opioid receptor mediated aversion | Semantic Scholar

κ-Opioid Receptor Activation in Dopamine Neurons Disrupts Behavioral  Inhibition | Neuropsychopharmacology
κ-Opioid Receptor Activation in Dopamine Neurons Disrupts Behavioral Inhibition | Neuropsychopharmacology

Biased ligands at opioid receptors: Current status and future directions |  Science Signaling
Biased ligands at opioid receptors: Current status and future directions | Science Signaling

Frontiers | Opioid Receptor-Mediated Regulation of Neurotransmission in the  Brain
Frontiers | Opioid Receptor-Mediated Regulation of Neurotransmission in the Brain

Kappa opioid receptor activation alleviates experimental autoimmune  encephalomyelitis and promotes oligodendrocyte-mediated remyelination |  Nature Communications
Kappa opioid receptor activation alleviates experimental autoimmune encephalomyelitis and promotes oligodendrocyte-mediated remyelination | Nature Communications

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

Implication of P38 MAPK in drugs of abuse and stress | Encyclopedia MDPI
Implication of P38 MAPK in drugs of abuse and stress | Encyclopedia MDPI

Constitutive activation of kappa opioid receptors at ventral tegmental area  inhibitory synapses following acute stress | eLife
Constitutive activation of kappa opioid receptors at ventral tegmental area inhibitory synapses following acute stress | eLife

Opioids As Modulators of Cell Death and Survival—Unraveling Mechanisms and  Revealing New Indications | Pharmacological Reviews
Opioids As Modulators of Cell Death and Survival—Unraveling Mechanisms and Revealing New Indications | Pharmacological Reviews

Early life stress dysregulates kappa opioid receptor signaling within the  lateral habenula - ScienceDirect
Early life stress dysregulates kappa opioid receptor signaling within the lateral habenula - ScienceDirect

STUDY OF AVERSIVE AND P38 MAPK-INHIBITORY PROPERTIES OF KAPPA-AGONIST WITH  ANALGESIC ACTIVITY - COMPOUND RU-1205 – тема научной статьи по  фундаментальной медицине читайте бесплатно текст научно-исследовательской  работы в электронной библиотеке КиберЛенинка
STUDY OF AVERSIVE AND P38 MAPK-INHIBITORY PROPERTIES OF KAPPA-AGONIST WITH ANALGESIC ACTIVITY - COMPOUND RU-1205 – тема научной статьи по фундаментальной медицине читайте бесплатно текст научно-исследовательской работы в электронной библиотеке КиберЛенинка

Opioids As Modulators of Cell Death and Survival—Unraveling Mechanisms and  Revealing New Indications | Pharmacological Reviews
Opioids As Modulators of Cell Death and Survival—Unraveling Mechanisms and Revealing New Indications | Pharmacological Reviews

Molecular mechanisms of opioid receptor-dependent signaling and behavior. -  Abstract - Europe PMC
Molecular mechanisms of opioid receptor-dependent signaling and behavior. - Abstract - Europe PMC

Kinase cascades and ligand-directed signaling at the kappa opioid receptor.  - Abstract - Europe PMC
Kinase cascades and ligand-directed signaling at the kappa opioid receptor. - Abstract - Europe PMC

Kappa Opioid Receptor-Induced Aversion Requires p38 MAPK Activation in VTA  Dopamine Neurons | Journal of Neuroscience
Kappa Opioid Receptor-Induced Aversion Requires p38 MAPK Activation in VTA Dopamine Neurons | Journal of Neuroscience

Kappa Opioid Receptor Ligands and Pharmacology: Diphenethylamines, a Class  of Structurally Distinct, Selective Kappa Opioid Ligands | SpringerLink
Kappa Opioid Receptor Ligands and Pharmacology: Diphenethylamines, a Class of Structurally Distinct, Selective Kappa Opioid Ligands | SpringerLink