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Endogenous opioid system dysregulation in depression: implications for new therapeutic approaches.

Marta Peciña | Jordan F Karp | Sanjay Mathew | Mark S Todtenkopf | Elliot W Ehrich | Jon-Kar Zubieta
Molecular psychiatry | 2019

The United States is in the midst of an opioid addiction and overdose crisis precipitated and exacerbated by use of prescription opioid medicines. The majority of opioid prescriptions are dispensed to patients with comorbid mood disorders including major depressive disorder (MDD). A growing body of research indicates that the endogenous opioid system is directly involved in the regulation of mood and is dysregulated in MDD. This involvement of the endogenous opioid system may underlie the disproportionate use of opioids among patients with mood disorders. Emerging approaches to address endogenous opioid dysregulation in MDD may yield novel therapeutics that have a low or absent risk of abuse and addiction relative to µ-opioid agonists. Moreover, agents targeting the endogenous opioid system would be expected to yield clinical benefits qualitatively different from conventional monaminergic antidepressants. The development of safe and effective agents to treat MDD-associated endogenous opioid dysregulation may represent a distinct and currently underappreciated means of addressing treatment resistant depression with the potential to attenuate the on-going opioid crisis.

Pubmed ID: 29955162

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Associated grants

  • Agency: NIMH NIH HHS, United States
    Id: K23 MH108674
  • Agency: NIMH NIH HHS, United States
    Id: R01 MH086858
  • Agency: NIMH NIH HHS, United States
    Id: R01 MH108534
  • Agency: NIMH NIH HHS, United States
    Id: R34 MH101371

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Allen Institute for Brain Science (tool)

RRID:SCR_006491

Seattle based independent, nonprofit medical research organization dedicated to accelerating the understanding of how human brain works. Provides free data and tools to researchers and educators and variety of unique online public resources for exploring the nervous system. Integrates gene expression data and neuroanatomy, along with data search and viewing tools, these resources are openly accessible via the Allen Brain Atlas data portal. Provides Allen Mouse Brain, Allen Spinal Cord Atlas, Allen Developing Mouse Brain Atlas, Allen Human Brain Atlas,Allen Mouse Brain Connectivity Atlas, Allen Cell Type Database, The Ivy Glioblastoma Atlas Project (Ivy GAP), The BrainSpan Atlas of the Developing Human Brain.

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