Related Experiment Video
Updated: Jun 27, 2026

Assessment of Morphine-induced Hyperalgesia and Analgesic Tolerance in Mice Using Thermal and Mechanical Nociceptive Modalities
Published on: July 29, 2014
Targeted mutation of EphB1 receptor prevents development of neuropathic hyperalgesia and physical dependence on
Yuan Han1, Xue-Song Song, Wen-Tao Liu
1Jiangsu Province Key Laboratory of Anesthesiology and Center for Pain Research and Treatment, Xuzhou Medical College, Xuzhou, Jiangsu, PR China. yuanhan2002@163.com
Abstract:
EphB receptor tyrosine kinases, which play important roles in synaptic connection and plasticity during development and in matured nervous system, have recently been implicated in processing of pain after nerve injury and morphine dependence. Subtypes of the EphB receptors that may contribute to the neuropathic pain and morphine dependence have not been identified. Here we demonstrate that the subtype EphB1 receptor is necessary for development of neuropathic pain and physical dependence on morphine. The results showed that peripheral nerve injury produced thermal hyperalgesia in wild-type (EphB1+/+) control littermate mice, but not in EphB1 receptor homozygous knockout (EphB1-/-) and heterozygous knockdown (EphB1+/-) mice. Hyperalgesia in the wild-type mice was inhibited by intrathecal administration of an EphB receptor blocking reagent EphB2-Fc (2 microg). Intrathecal administration of an EphB receptor activator ephrinB1-Fc (1 microg) evoked thermal hyperalgesia in EphB1+/+, but not EphB1-/- and EphB1+/- mice. Cellularly, nerve injury-induced hyperexcitability of the medium-sized dorsal root ganglion neurons was prevented in EphB1-/- and EphB1+/- mice. In chronically morphine-treated mice, most of the behavioral signs and the overall score of naloxone-precipitated withdrawal were largely diminished in EphB1-/- mice compared to those in the wild-type. These findings indicate that the EphB1 receptor is necessary for development of neuropathic pain and physical dependence on morphine and suggest that the EphB1 receptor is a potential target for preventing, minimizing, or reversing the development of neuropathic pain and opiate dependence.
Insights
The EphB1 receptor is crucial for developing neuropathic pain and morphine dependence. Blocking EphB1 receptor activity in mice reduced pain sensitivity and withdrawal symptoms, highlighting its potential as a therapeutic target.
Area of Science:
- Neuroscience
- Molecular Biology
- Pharmacology
Background:
- EphB receptor tyrosine kinases are vital for nervous system development and function.
- Recent studies suggest EphB receptors involvement in pain processing and morphine dependence.
Purpose of the Study:
- To identify specific EphB receptor subtypes involved in neuropathic pain and morphine dependence.
- To investigate the role of the EphB1 receptor subtype in these conditions.
Main Methods:
- Utilized wild-type, EphB1 knockout (EphB1-/-), and EphB1 knockdown (EphB1+/-) mice.
- Assessed thermal hyperalgesia following peripheral nerve injury.
- Administered EphB receptor blocking and activating reagents.
- Examined dorsal root ganglion neuron excitability.
- Evaluated morphine withdrawal signs after chronic morphine treatment.
Main Results:
- Peripheral nerve injury induced hyperalgesia in wild-type mice but not in EphB1-/- or EphB1+/- mice.
- EphB1 receptor activation evoked hyperalgesia in wild-type but not in EphB1 deficient mice.
- Nerve injury-induced neuronal hyperexcitability was prevented in EphB1 deficient mice.
- Morphine withdrawal symptoms were significantly diminished in EphB1-/- mice.
Conclusions:
- The EphB1 receptor is essential for the development of neuropathic pain.
- EphB1 receptor signaling is necessary for physical dependence on morphine.
- EphB1 receptor represents a potential therapeutic target for neuropathic pain and opiate dependence.
Related Concept Videos
Analgesia and Pain Management
Opioid Receptors: Overview
Opioid Analgesics: Synthetic and Semisynthetic Opioids
Opioid Analgesics: Morphine and Other Natural Cogeners

