Related Experiment Video
Updated: Dec 11, 2025

Assessment of Morphine-induced Hyperalgesia and Analgesic Tolerance in Mice Using Thermal and Mechanical Nociceptive Modalities
Published on: July 29, 2014
Relevance of Mu-Opioid Receptor Splice Variants and Plasticity of Their Signaling Sequelae to Opioid Analgesic
Sumita Chakrabarti1, Nai-Jiang Liu1, Alan R Gintzler2
1Department Obstetrics and Gynecology, SUNY Downstate Health Sciences University, 450 Clarkson Ave, Brooklyn, NY, 11203, USA.
Abstract:
Opioid dose escalation to effectively control pain is often linked to the current prescription opioid abuse epidemic. This creates social as well as medical imperatives to better understand the mechanistic underpinnings of opioid tolerance to develop interventions that minimize it, thereby maximizing the analgesic effectiveness of opioids. Profound opioid analgesic tolerance can be observed in the absence of mu-opioid receptor (MOR) downregulation, aggregate MOR G protein uncoupling, and MOR desensitization, in the absence of impaired G protein coupled receptor kinase phosphorylation, arrestin binding, or endocytosis. Thus, we have explored alternative biochemical sequelae that might better account for opioid analgesic tolerance. Our findings indicate that substantial plasticity among upstream and downstream components of opioid receptor signaling and the emergence of alternative signaling pathways are major contributors to opioid analgesic tolerance. An exemplar of this plasticity is our findings that chronic morphine upregulates the MOR variants MOR-1B2 and MOR-1C1 and phosphorylation of their C-terminal sites not present in MOR-1, events causally associated with the chronic morphine-induced shift in MOR G protein coupling from predominantly Gi/Go inhibitory to Gs-stimulatory adenylyl cyclase signaling. The unique feature(s) of these variants that underlies their susceptibility to adapting to chronic morphine by altering the nature of their G protein coupling reveals the richness and pliability of MOR signaling that is enabled by generating a wide diversity of MOR variants. Furthermore, given differential anatomical expression patterns of MOR variants, MOR splice variant-dependent adaptations to chronic morphine could enable mechanistic underpinnings of tolerance and dependence that are CNS region- and cell-specific.
Insights
Opioid tolerance, a major challenge in pain management, arises from complex signaling pathway adaptations, not just receptor changes. Understanding these molecular mechanisms is key to developing new pain relief strategies.
Area of Science:
- Neuroscience
- Pharmacology
- Molecular Biology
Background:
- Opioid dose escalation for pain control contributes to the opioid abuse epidemic.
- Understanding opioid tolerance mechanisms is crucial for developing safer analgesics.
- Traditional explanations like receptor downregulation do not fully account for tolerance.
Purpose of the Study:
- To investigate alternative biochemical mechanisms underlying opioid analgesic tolerance.
- To explore the role of mu-opioid receptor (MOR) signaling plasticity in tolerance.
- To identify novel molecular targets for mitigating opioid tolerance.
Main Methods:
- Analysis of MOR signaling pathways beyond canonical desensitization and downregulation.
- Investigating MOR splice variants and their G protein coupling.
- Assessing changes in adenylyl cyclase signaling upon chronic morphine exposure.
Main Results:
- Opioid tolerance is linked to plasticity in upstream/downstream signaling components and alternative pathways.
- Chronic morphine upregulates specific MOR variants (MOR-1B2, MOR-1C1) and alters their C-terminal phosphorylation.
- MOR variant alterations shift G protein coupling from inhibitory (Gi/Go) to stimulatory (Gs) adenylyl cyclase signaling.
Conclusions:
- MOR splice variant diversity and altered signaling are key drivers of opioid analgesic tolerance.
- Region- and cell-specific adaptations in MOR variants may underlie differential tolerance and dependence.
- Targeting MOR variant signaling offers a potential strategy to minimize opioid tolerance.
More Related Videos
07:48Tracking Drug-induced Changes in Receptor Post-internalization Trafficking by Colocalizational Analysis
Published on: July 3, 2015
16:02Demonstration of the Sequence Alignment to Predict Across Species Susceptibility Tool for Rapid Assessment of Protein Conservation
Published on: February 10, 2023
Related Concept Videos
Analgesia and Pain Management
Opioid Receptors: Overview
Opioid Analgesics: Synthetic and Semisynthetic Opioids
Opioid Analgesics: Morphine and Other Natural Cogeners
Drug Abuse and Addiction: Pharmacological Phenomena
Spare Receptors