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Published on: July 29, 2014
Nor-Binaltorphimine Blocks the Adverse Effects of Morphine after Spinal Cord Injury
Miriam Aceves1, Eric A Bancroft1, Alejandro R Aceves1
1Department of Neuroscience and Experimental Therapeutics, Texas A&M Health Science Center , Bryan, Texas.
Abstract:
Opioids are frequently used for the treatment of pain following spinal cord injury (SCI). Unfortunately, we have shown that morphine administered in the acute phase of SCI results in significant, adverse secondary consequences including compromised locomotor and sensory recovery. Similarly, we showed that selective activation of the κ-opioid receptor (KOR), even at a dose 32-fold lower than morphine, is sufficient to attenuate recovery of locomotor function. In the current study, we tested whether activation of the KOR is necessary to produce morphine's adverse effects using nor-Binaltorphimine (norBNI), a selective KOR antagonist. Rats received a moderate spinal contusion (T12) and 24 h later, baseline locomotor function and nociceptive reactivity were assessed. Rats were then administered norBNI (0, 0.02, 0.08, or 0.32 μmol) followed by morphine (0 or 0.32 μmol). Nociception was reassessed 30 min after drug treatment, and recovery was evaluated for 21 days. The effects of norBNI on morphine-induced attenuation of recovery were dose dependent. At higher doses, norBNI blocked the adverse effects of morphine on locomotor recovery, but analgesia was also significantly decreased. Conversely, at low doses, analgesia was maintained, but the adverse effects on recovery persisted. A moderate dose of norBNI, however, adequately protected against morphine's adverse effects without eliminating its analgesic efficacy. This suggests that activation of the KOR system plays a significant role in the morphine-induced attenuation of recovery. Our research suggests that morphine, and other opioid analgesics, may be contraindicated for the SCI population. Blocking KOR activity may be a viable strategy for improving the safety of clinical opioid use.
Insights
Morphine use after spinal cord injury (SCI) impairs recovery. Blocking the kappa-opioid receptor (KOR) with norBNI can prevent these negative effects, suggesting KOR activation is key to morphine
Area of Science:
- Neuroscience
- Pharmacology
- Regenerative Medicine
Background:
- Opioids are commonly used for pain management post-spinal cord injury (SCI).
- Morphine administration during the acute phase of SCI can lead to adverse outcomes, including impaired locomotor and sensory recovery.
- Selective activation of the kappa-opioid receptor (KOR) has been shown to attenuate recovery of locomotor function, even at low doses.
Purpose of the Study:
- To investigate whether KOR activation is necessary for morphine's detrimental effects on recovery after SCI.
- To evaluate the efficacy of nor-Binaltorphimine (norBNI), a selective KOR antagonist, in mitigating morphine's adverse effects on recovery and analgesia.
Main Methods:
- Rats with moderate spinal contusion (T12) were treated with varying doses of norBNI followed by morphine.
- Locomotor function and nociceptive reactivity were assessed at baseline, after drug administration, and over a 21-day recovery period.
Main Results:
- The effects of norBNI on morphine-induced recovery attenuation were dose-dependent.
- Higher doses of norBNI blocked morphine's negative impact on locomotor recovery but also reduced analgesia.
- Moderate doses of norBNI protected against adverse effects on recovery while preserving analgesic efficacy.
- Low doses of norBNI maintained analgesia but did not prevent the negative effects on recovery.
Conclusions:
- KOR system activation plays a significant role in morphine-induced attenuation of recovery following SCI.
- Morphine and other opioid analgesics may be contraindicated in the SCI population due to impaired recovery.
- Blocking KOR activity presents a potential strategy to improve the safety and efficacy of opioid analgesics in SCI patients.
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