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Updated: Feb 5, 2026

The Sciatic Nerve Cuffing Model of Neuropathic Pain in Mice
Published on: July 16, 2014
Alterations in the Activity of Spinal and Thalamic Opioid Systems in a Mice Neuropathic Pain Model
Ewelina Rojewska1, Agnieszka Wawrzczak-Bargiela2, Edina Szucs3
1Department of Pain Pharmacology, Institute of Pharmacology, Polish Academy of Sciences, 12 Smętna Street, 31-343 Krakow, Poland.
Abstract:
Clinical studies have reported lower effectivity of opioid drugs in therapy of neuropathic pain. Therefore, to determine the changes in endogenous opioid systems in this pain more precisely, we have studied the changes in the pain-related behavior on days 1, 14, and 28 following a chronic constriction injury (CCI) to the sciatic nerve in mice. In parallel, we have studied the changes of μ-(MOP), δ-(DOP) and κ-(KOP) receptors, proenkephalin (PENK) and prodynorphin (PDYN) mRNA levels, as well as GTPγS binding of opioid receptors on the ipsi- and contralateral parts of the spinal cord and thalamus on the 14th day following CCI, as on this day the greatest manifestation of pain-related behavior was observed. On ipsilateral spinal cord, the decrease in MOP/DOP/KOP receptor and increase in PDYN/PENK mRNA expression was observed. In thalamus, MOP/DOP/KOP receptor expression decreased contralaterally. On ipsilateral side, there were no changes in PDYN/PENK or DOP/KOP receptor expression, but MOP mRNA decreased. The spinal GTPγS binding of MOP/DOP/KOP receptor ligands decreased on the ipsilateral side, yet the effect was less pronounced for DOP receptor ligands. In thalamus, a decrease was observed on the contralateral side for all opioid receptor ligands, especially for DOP ligand. A less pronounced decrease in GTPγS binding of spinal DOP ligands may indicate a weaker stimulation of ascending nociceptive pathways, which could explain the absence of decreased activity of DOP receptor ligands in neuropathy. These findings may suggest that drugs with a higher affinity for the DOP receptor will perform better in neuropathic pain.
Insights
Neuropathic pain alters opioid receptors in the spinal cord and thalamus. Targeting delta-opioid receptors may improve pain management therapies.
Area of Science:
- Neuroscience
- Pharmacology
- Pain Research
Background:
- Opioid drug effectiveness is reduced in neuropathic pain treatment.
- Endogenous opioid system changes in neuropathic pain require precise investigation.
Purpose of the Study:
- To investigate changes in pain-related behavior and endogenous opioid systems following sciatic nerve injury.
- To analyze opioid receptor expression, mRNA levels, and GTPγS binding in the spinal cord and thalamus.
Main Methods:
- Chronic constriction injury (CCI) model in mice to induce neuropathic pain.
- Analysis of μ-(MOP), δ-(DOP), and κ-(KOP) receptors, PENK and PDYN mRNA, and GTPγS binding.
- Assessment at 1, 14, and 28 days post-injury, focusing on day 14.
Main Results:
- Decreased MOP/DOP/KOP receptor expression and increased PDYN/PENK mRNA in the ipsilateral spinal cord.
- Decreased MOP/DOP/KOP receptor expression contralaterally in the thalamus.
- Reduced GTPγS binding for all opioid receptor ligands, particularly in the thalamus, with less pronounced effects for DOP ligands in the spinal cord.
Conclusions:
- Neuropathic pain induces significant alterations in central and peripheral opioid systems.
- Reduced delta-opioid receptor ligand activity in the spinal cord may relate to less effective pain control.
- Developing drugs targeting delta-opioid receptors could offer better therapeutic outcomes for neuropathic pain.
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