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Updated: May 8, 2025

Assessment of Morphine-induced Hyperalgesia and Analgesic Tolerance in Mice Using Thermal and Mechanical Nociceptive Modalities
Published on: July 29, 2014
Modulation of oxidative stress/NMDA/nitric oxide pathway by topiramate attenuates morphine dependence in mice
Shabir Hussain1, Haji Bahadar1,2, Muhammad Imran Khan3
1Department of Pharmacology, Institute of Basic Medical Sciences, Khyber Medical University, Peshawar, Khyber Pakhtunkhwa, Pakistan.
Abstract:
Morphine belongs to the class of opioids and is known for its potential to cause dependence and addiction, particularly with prolonged use. Due to the associated risks, caution must be taken when prescribing and limiting its clinical use. Overexpression of N-methyl-D-aspartate (NMDA) receptors, nitric oxide and cGMP pathway has been implicated in exacerbate the development of morphine dependence and withdrawal. Topiramate, an antiepileptic drug, interacts with various receptors, ion channels and certain enzymes. In this study, we investigated the effects of topiramate on morphine dependence in mice, specifically targeting NMDA/Nitric oxide/cGMP pathway. Mice were administered different doses of topiramate (intraperitoneally) during the development phase, 45 min prior to morphine administration. Topiramate (20 mg/kg) significantly reduced naloxone-induced withdrawal symptoms in morphine-dependent mice. Additionally, subeffective doses of topiramate, when co-administered with NMDA receptor antagonist MK-801 (0.05 mg/kg) or nitric oxide synthase inhibitors such as L-NAME (10 mg/kg, a non-specific NOS inhibitor) and 7-NI (20 mg/kg, a selective nNOS inhibitor), showed a marked reduction in withdrawal signs. However, the effect of topiramate (20 mg/kg) was abolished when co-administered with NMDA (75 mg/kg, an NMDA receptor agonist) or L-arginine (60 mg/kg, a NOS substrate). Ex-vivo analysis revealed that topiramate significantly reduced oxidative stress and downregulated the gene expression of nNOS, NR1, and NR2B in morphine-treated mice. Furthermore, the expression of NR1 and NR2B proteins in the hippocampus and cortex was significantly reduced in topiramate-pretreated mice. Hence, this finding suggest that topiramate mitigates morphine dependence and withdrawal by inhibiting oxidative stress and modulating the NMDA/NO pathway.
Insights
Topiramate, an antiepileptic drug, effectively reduces morphine dependence and withdrawal symptoms in mice. It works by inhibiting oxidative stress and modulating the N-methyl-D-aspartate/nitric oxide pathway.
Area of Science:
- Neuroscience
- Pharmacology
- Addiction Research
Background:
- Morphine dependence and withdrawal are significant clinical challenges.
- The N-methyl-D-aspartate (NMDA) receptor, nitric oxide (NO), and cGMP pathway are implicated in opioid dependence.
- Topiramate is an antiepileptic drug with diverse receptor interactions.
Purpose of the Study:
- To investigate the efficacy of topiramate in mitigating morphine dependence and withdrawal in a mouse model.
- To explore the role of the NMDA/NO pathway in topiramate's effects on morphine dependence.
Main Methods:
- Mice were pretreated with varying doses of topiramate before morphine administration.
- Naloxone-induced withdrawal symptoms were assessed.
- Co-administration with NMDA receptor antagonists/agonists and nitric oxide synthase inhibitors/substrates was performed.
- Ex-vivo analysis examined oxidative stress and gene/protein expression (nNOS, NR1, NR2B) in brain tissues.
Main Results:
- Topiramate (20 mg/kg) significantly reduced naloxone-induced withdrawal symptoms.
- Subeffective doses of topiramate combined with NMDA antagonists or NOS inhibitors further reduced withdrawal signs.
- Topiramate's effects were reversed by NMDA agonists or NOS substrates.
- Topiramate decreased oxidative stress and downregulated nNOS, NR1, and NR2B gene and protein expression in the hippocampus and cortex.
Conclusions:
- Topiramate demonstrates potential as an adjunct therapy for managing morphine dependence and withdrawal.
- The findings suggest topiramate exerts its effects by inhibiting oxidative stress and modulating the NMDA/NO pathway.
- Further research into topiramate's neuroprotective and anti-addictive properties is warranted.
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