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близо до Възпроизвеждане значително kappa opioid receptor activates erk 1 2 интензивен в рамките на Усещам

IJMS | Free Full-Text | The Mechanisms Involved in Morphine Addiction: An  Overview | HTML
IJMS | Free Full-Text | The Mechanisms Involved in Morphine Addiction: An Overview | HTML

Down-regulation of c-Cbl by Morphine Accounts for Persistent ERK1/2  Signaling in δ-Opioid Receptor-expressing HEK293 Cells - Journal of  Biological Chemistry
Down-regulation of c-Cbl by Morphine Accounts for Persistent ERK1/2 Signaling in δ-Opioid Receptor-expressing HEK293 Cells - Journal of Biological Chemistry

Diverse Kappa Opioid Receptor Agonists: Relationships Between Signaling and  Behavior
Diverse Kappa Opioid Receptor Agonists: Relationships Between Signaling and Behavior

PDF] Antagonizing the different stages of kappa opioid receptor activation  selectively and independently attenuates acquisition and consolidation of  associative memories | Semantic Scholar
PDF] Antagonizing the different stages of kappa opioid receptor activation selectively and independently attenuates acquisition and consolidation of associative memories | Semantic Scholar

Frontiers | Heteromerization Modulates mu Opioid Receptor Functional  Properties in vivo
Frontiers | Heteromerization Modulates mu Opioid Receptor Functional Properties in vivo

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

Structure–Activity Relationship Studies of Functionally Selective Kappa  Opioid Receptor Agonists that Modulate ERK 1/2 Phosphorylation While  Preserving G Protein Over βArrestin2 Signaling Bias | ACS Chemical  Neuroscience
Structure–Activity Relationship Studies of Functionally Selective Kappa Opioid Receptor Agonists that Modulate ERK 1/2 Phosphorylation While Preserving G Protein Over βArrestin2 Signaling Bias | ACS Chemical Neuroscience

Estrogen Regulation of GRK2 Inactivates Kappa Opioid Receptor Signaling  Mediating Analgesia, But Not Aversion | Journal of Neuroscience
Estrogen Regulation of GRK2 Inactivates Kappa Opioid Receptor Signaling Mediating Analgesia, But Not Aversion | Journal of Neuroscience

G Protein regulation of MAPK networks | Oncogene
G Protein regulation of MAPK networks | Oncogene

Dopaminergic cellular and circuit contributions to kappa opioid receptor  mediated aversion - ScienceDirect
Dopaminergic cellular and circuit contributions to kappa opioid receptor mediated aversion - ScienceDirect

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

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

μ-Opioid Receptor-mediated ERK Activation Involves Calmodulin-dependent  Epidermal Growth Factor Receptor Transactivation* - Journal of Biological  Chemistry
μ-Opioid Receptor-mediated ERK Activation Involves Calmodulin-dependent Epidermal Growth Factor Receptor Transactivation* - Journal of Biological Chemistry

Pharmaceuticals | Free Full-Text | Myocardial Opioid Receptors in  Conditioning and Cytoprotection
Pharmaceuticals | Free Full-Text | Myocardial Opioid Receptors in Conditioning and Cytoprotection

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

Frontiers | A Review of the Therapeutic Potential of Recently Developed G  Protein-Biased Kappa Agonists
Frontiers | A Review of the Therapeutic Potential of Recently Developed G Protein-Biased Kappa Agonists

The mechanism of μ-opioid receptor (MOR)-TRPV1 crosstalk in TRPV1 activation  involves morphine anti-nociception, tolerance and
The mechanism of μ-opioid receptor (MOR)-TRPV1 crosstalk in TRPV1 activation involves morphine anti-nociception, tolerance and

The “classical” and “nonclassical” MOR signaling pathways. (A) MOR... |  Download Scientific Diagram
The “classical” and “nonclassical” MOR signaling pathways. (A) MOR... | Download Scientific Diagram

Frontiers | Mu Opioid Receptor Heterodimers Emerge as Novel Therapeutic  Targets: Recent Progress and Future Perspective
Frontiers | Mu Opioid Receptor Heterodimers Emerge as Novel Therapeutic Targets: Recent Progress and Future Perspective

Opioid receptor modulation of neural circuits in depression: What can be  learned from preclinical data? - ScienceDirect
Opioid receptor modulation of neural circuits in depression: What can be learned from preclinical data? - ScienceDirect

Toward Directing Opioid Receptor Signaling to Refine Opioid Therapeutics -  Biological Psychiatry
Toward Directing Opioid Receptor Signaling to Refine Opioid Therapeutics - Biological Psychiatry

The blocking of kappa‐opioid receptor reverses the changes in dorsolateral  striatum dopamine dynamics during the amphetamine sensitization - Azocar -  2019 - Journal of Neurochemistry - Wiley Online Library
The blocking of kappa‐opioid receptor reverses the changes in dorsolateral striatum dopamine dynamics during the amphetamine sensitization - Azocar - 2019 - Journal of Neurochemistry - Wiley Online Library

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

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

Phosphatidylethanolamine‑binding protein is not involved in µ‑opioid  receptor-mediated regulation of extracellular signal‑regulated kinase
Phosphatidylethanolamine‑binding protein is not involved in µ‑opioid receptor-mediated regulation of extracellular signal‑regulated kinase

Signaling diversity of mu- and delta- opioid receptor ligands:  Re-evaluating the benefits of β-arrestin/G protein signaling bias -  ScienceDirect
Signaling diversity of mu- and delta- opioid receptor ligands: Re-evaluating the benefits of β-arrestin/G protein signaling bias - ScienceDirect