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Pharmacol Rep ; 68(1): 85-94, 2016 Feb.
Article in English | MEDLINE | ID: mdl-26721358

ABSTRACT

BACKGROUND: The relation between glutamate homeostasis and PPAR gamma has got tremendous importance in nerve trauma and pain. Present study has been designed to elucidate the interaction between the GLT-1 activator (ceftriaxone) and PPAR gamma agonist (pioglitazone) in the spinal nerve ligation induced neuropathic pain. METHODS: Male SD rats were subjected to spinal nerve ligation to induce neuropathic pain. Pioglitazone, ceftriaxone and their combination treatments were given for 28 days. Various behavioral, biochemical, neuroinflammatory and apoptotic mediators were assessed subsequently. RESULTS: In the present study, ligation of L5 and L6 spinal nerves resulted in marked hyperalgesia and allodynia to different mechanical and thermal stimuli. In addition there is marked increase in oxidative-nitrosative stress parameters, inflammatory and apoptotic markers in spinal cord of spinal nerve ligated rats. Treatment with pioglitazone and ceftriaxone significantly prevented these behavioral, biochemical, mitochondrial and cellular alterations in rats. Further, combination of pioglitazone (10mg/kg, ip) with ceftriaxone (100mg/kg, ip) significantly potentiated the protective effects as compared to their effects per se. CONCLUSION: Based on these results we propose that possible interplay between the neuroprotective effects of pioglitazone and ceftriaxone exists in suppressing the behavioral, biochemical, mitochondrial, neuroinflammatory and apoptotic cascades in spinal nerve ligation induced neuropathic pain in rats.


Subject(s)
Ceftriaxone/administration & dosage , Disease Models, Animal , Excitatory Amino Acid Transporter 2/agonists , Neuralgia/drug therapy , PPAR gamma/agonists , Thiazolidinediones/administration & dosage , Animals , Drug Delivery Systems/methods , Drug Therapy, Combination , Excitatory Amino Acid Transporter 2/metabolism , Male , Neuralgia/metabolism , Neuroprotective Agents/administration & dosage , PPAR gamma/metabolism , Pain Measurement/drug effects , Pain Measurement/methods , Pioglitazone , Rats , Rats, Sprague-Dawley , Signal Transduction/drug effects , Signal Transduction/physiology
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