Related Experiment Video
Updated: Jan 28, 2026

Determining Pain Detection and Tolerance Thresholds Using an Integrated, Multi-Modal Pain Task Battery
Published on: April 14, 2016
Current strategies toward safer mu opioid receptor drugs for pain management
Aliza T Ehrlich1, Brigitte L Kieffer1, Emmanuel Darcq1
1a Department of Psychiatry , McGill University, Douglas Hospital Research Center , Montréal , QC , Canada.
Introduction:
Pain relief remains a major public health challenge. The most efficient available painkillers are opioids targeting the mu opioid receptor (MOR). MORs are expressed in the areas of the brain [including pain and respiratory centers] that are important for processing reward and aversion. Thus, MOR activation efficiently alleviates severe pain, but the concomitant reward and respiratory depressant effects pose a threat; patients taking opioids potentially develop opioid addiction and high risk for overdose. Areas covered: Ongoing efforts to generate safer opioid analgesics are reviewed here. The design of biased compounds that trigger MOR induced G protein over β-arrestin signaling, peripheral opioids, drugs targeting MORs in heteromers and drugs enhancing endogenous opioid activity are discussed. Expert opinion: There is evidence that throttling MOR signaling may lead to an era of opioids that are truly efficient painkillers with lower side effects and risk of overdose. However, few of the drugs derived from the advanced approaches outlined here, are getting approval by regulatory committees for use in clinical settings. Thus, there is an urgent need to (i) better clarify mechanisms underlying the hazardous physiological effects of MOR activation, and (ii) fully validate the safety of these new MOR-based therapies.
Insights
Developing safer opioid analgesics is crucial for public health. Research focuses on biased compounds and novel strategies to reduce addiction and overdose risks associated with mu opioid receptor (MOR) activation.
Area of Science:
- Pharmacology
- Neuroscience
- Public Health
Background:
- Opioids targeting the mu opioid receptor (MOR) are effective painkillers but carry risks of addiction and overdose.
- MORs are involved in pain, reward, and respiratory regulation, contributing to both therapeutic effects and adverse outcomes.
Purpose of the Study:
- To review ongoing efforts and advanced strategies for developing safer opioid analgesics.
- To discuss novel approaches that aim to mitigate the dangerous side effects of MOR activation.
Main Methods:
- Review of current research on biased MOR agonists, peripheral opioids, MOR heteromers, and endogenous opioid enhancers.
- Analysis of mechanisms underlying hazardous physiological effects of MOR activation.
Main Results:
- Throttling MOR signaling holds promise for developing effective painkillers with reduced side effects and overdose risk.
- Few advanced MOR-based therapies have gained regulatory approval, highlighting challenges in clinical translation.
Conclusions:
- Further research is needed to elucidate the mechanisms of adverse MOR effects and validate the safety of new MOR-based therapies.
- Clarifying these mechanisms and validating safety are essential for the clinical use of novel opioid analgesics.
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