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Morphine Modulates Interleukin-4- or Breast Cancer Cell-induced Pro-metastatic Activation of Macrophages.
Morphine decreases the pro-angiogenic interaction between breast cancer cells and macrophages in vitro.
Endogenous morphine and its metabolites in mammals: history, synthesis, localization and perspectives.
Etifoxine stimulates allopregnanolone synthesis in the spinal cord to produce analgesia in experimental mononeuropathy.
The TLR4-Active Morphine Metabolite Morphine-3-Glucuronide Does Not Elicit Macrophage Classical Activation In Vitro.
Long-lasting spinal oxytocin analgesia is ensured by the stimulation of allopregnanolone synthesis which potentiates GABA(A) receptor-mediated synaptic inhibition.
A Nonpeptide Oxytocin Receptor Agonist for a Durable Relief of Inflammatory Pain
Mapping of endogenous morphine-like compounds in the adult mouse brain: Evidence of their localization in astrocytes and GABAergic cells.
Comparison of serum and lithium-heparinate plasma for the accurate measurements of endogenous and exogenous morphine concentrations.
Localization of endogenous morphine-like compounds in the mouse spinal cord.
Endogenous morphine-like compound immunoreactivity increases in parkinsonism.
Etifoxine analgesia in experimental monoarthritis: a combined action that protects spinal inhibition and limits central inflammatory processes.
Unveiling the Impact of Morphine on Tamoxifen Metabolism in Mice in vivo
Endogenous morphine-6-glucuronide (M6G) is present in the plasma of patients: validation of a specific anti-M6G antibody for clinical and basic research.
Morphine Binds Creatine Kinase B and Inhibits Its Activity
Abnormal nociception and opiate sensitivity of STOP null mice exhibiting elevated levels of the endogenous alkaloid morphine.
Pharmacological rescue of nociceptive hypersensitivity and oxytocin analgesia impairment in a rat model of neonatal maternal separation
CTIP2 is a negative regulator of P-TEFb
Stable isotope-labelled morphine to study in vivo central and peripheral morphine glucuronidation and brain transport in tolerant mice.
Lithium reverses mechanical allodynia through a mu opioid-dependent mechanism

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