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Keywords = nociceptive reinstatement

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16 pages, 1363 KiB  
Article
Evidence for Endogenous Opioid Dependence Related to Latent Sensitization in a Rat Model of Chronic Inflammatory Pain
by Julio César Morales-Medina, Nicola Pugliese, Alessandro Di Cerbo, Claudia Zizzadoro and Tommaso Iannitti
Int. J. Mol. Sci. 2023, 24(3), 2812; https://doi.org/10.3390/ijms24032812 - 1 Feb 2023
Cited by 3 | Viewed by 2653
Abstract
Studies performed in a mouse model of chronic inflammatory pain induced by intraplantar injection of complete Freund’s adjuvant (CFA) have shown that constitutive activation of the endogenous opioid signaling, besides serving as a mechanism of endogenous analgesia that tonically represses pain sensitization, also [...] Read more.
Studies performed in a mouse model of chronic inflammatory pain induced by intraplantar injection of complete Freund’s adjuvant (CFA) have shown that constitutive activation of the endogenous opioid signaling, besides serving as a mechanism of endogenous analgesia that tonically represses pain sensitization, also generates a state of endogenous opioid dependence. Since species-related differences concerning pain biology and addictive behaviors occur between mice and rats, the present study explored whether the coexistence of endogenous opioid analgesia and endogenous opioid dependence also characterizes a homologous rat model. To this aim, CFA-injured Wistar rats were treated with either 3 mg/kg or 10 mg/kg of the opioid receptor inverse agonist naltrexone (NTX) during the pain remission phase and monitored for 60 min for possible withdrawal behaviors. At 3 mg/kg, NTX, besides inducing the reinstatement of mechanical allodynia, also caused a distinct appearance of ptosis, with slight but nonsignificant changes to the occurrence of teeth chatters and rearing. On the other hand, 10 mg/kg of NTX failed to unmask pain sensitization and induced significantly lower levels of ptosis than 3 mg/kg. Such an NTX-related response pattern observed in the rat CFA model seems to differ substantially from the pattern previously described in the mouse CFA model. This supports the knowledge that mice and rats are not identical in terms of pharmacological response and stresses the importance of choosing the appropriate species for preclinical pain research purposes depending on the scientific question being asked. Full article
(This article belongs to the Special Issue New Advance on Molecular Targets for the Treatment of Pain)
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