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Endogenous opioid systems alterations in pain and opioid use disorder
Jessica A Higginbotham1,2,3, Tamara Markovic4, Nicolas Massaly1,2,3
1Department of Anesthesiology, Washington University in St. Louis, St. Louis, MO, United States.
Abstract:
Decades of research advances have established a central role for endogenous opioid systems in regulating reward processing, mood, motivation, learning and memory, gastrointestinal function, and pain relief. Endogenous opioid systems are present ubiquitously throughout the central and peripheral nervous system. They are composed of four families, namely the μ (MOPR), κ (KOPR), δ (DOPR), and nociceptin/orphanin FQ (NOPR) opioid receptors systems. These receptors signal through the action of their endogenous opioid peptides β-endorphins, dynorphins, enkephalins, and nociceptins, respectfully, to maintain homeostasis under normal physiological states. Due to their prominent role in pain regulation, exogenous opioids-primarily targeting the MOPR, have been historically used in medicine as analgesics, but their ability to produce euphoric effects also present high risks for abuse. The ability of pain and opioid use to perturb endogenous opioid system function, particularly within the central nervous system, may increase the likelihood of developing opioid use disorder (OUD). Today, the opioid crisis represents a major social, economic, and public health concern. In this review, we summarize the current state of the literature on the function, expression, pharmacology, and regulation of endogenous opioid systems in pain. Additionally, we discuss the adaptations in the endogenous opioid systems upon use of exogenous opioids which contribute to the development of OUD. Finally, we describe the intricate relationship between pain, endogenous opioid systems, and the proclivity for opioid misuse, as well as potential advances in generating safer and more efficient pain therapies.
Insights
Endogenous opioid systems regulate crucial functions, but exogenous opioids used for pain relief can lead to opioid use disorder (OUD). Understanding these systems is key to developing safer pain treatments.
Area of Science:
- Neuroscience
- Pharmacology
- Pain Management
Background:
- Endogenous opioid systems are vital for reward, mood, motivation, and pain relief.
- These systems involve four receptor families (MOPR, KOPR, DOPR, NOPR) and their corresponding peptides.
- Exogenous opioids, while effective analgesics, carry a high risk of abuse and addiction.
Purpose of the Study:
- To review the function, expression, pharmacology, and regulation of endogenous opioid systems in pain.
- To discuss how exogenous opioid use alters endogenous systems, contributing to opioid use disorder (OUD).
- To explore the relationship between pain, endogenous opioids, and opioid misuse, and potential new therapies.
Main Methods:
- Literature review of current research on endogenous opioid systems.
- Analysis of opioid receptor pharmacology and signaling pathways.
- Examination of neurobiological adaptations in response to pain and exogenous opioids.
Main Results:
- Endogenous opioid systems play a complex role in pain modulation and reward pathways.
- Perturbations in these systems by pain and exogenous opioids can precipitate opioid use disorder.
- Adaptations within the central nervous system are critical in the development of OUD.
Conclusions:
- A comprehensive understanding of endogenous opioid systems is essential for addressing the opioid crisis.
- Targeting these systems offers potential for developing safer and more effective pain management strategies.
- Further research is needed to elucidate the intricate mechanisms underlying pain, opioid misuse, and OUD.
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