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Updated: Jul 31, 2026

Chronic Post-Ischemia Pain Model for Complex Regional Pain Syndrome Type-I in Rats
Published on: January 21, 2020
Role of CRF1 receptor in post-incisional plasma extravasation and nociceptive responses in mice
Asunción Romero1, Juan-Antonio García-Carmona2, María-Luisa Laorden2
1Department of Anesthesiology, Pain Research Unit, Institut Municipal d'Investigació Medica, Hospital del Mar, Universitat Autonoma de Barcelona, Barcelona, Spain.
Abstract:
The corticotropin-releasing factor (CRF) is involved in a number of physiological functions including pain perception. The purpose of this study was to evaluate the role of CRF1 receptor in the long-lasting post-surgical changes in somatic nociceptive thresholds and in local inflammatory responses, using genetically engineered mice lacking functional CRF1 receptor. Animals underwent a plantar incision under anaesthesia with remifentanil (80μg/kg s.c.) and sevoflurane. Mechanical thresholds (von Frey) and plasma extravasation (Evan's blue) were evaluated at different time points. On postoperative day 20, mechanical thresholds had returned to baseline in CD1 mice (3.07±6.21%), while B6,129CRHtklee mice presented significant hyperalgesia, which was similar in wild-type (WT) (-29.81±8.89%) and CRF1 receptor knockout (KO) (-37.10±10.75%) mice, showing strain differences. The administration of naloxone (1mg/kg, s.c.) on postoperative day 21 produced hyperalgesia revealing surgery-induced latent pain sensitization. The extent of hyperalgesia was greater in KO versus WT mice, suggesting a role of CRF1 receptors in the upward modulation of endogenous opioid release. Furthermore, two days after surgery, plasma extravasation returned to baseline in WT mice but remained elevated in KO mice. In non-manipulated B6,129CRHtklee KO mice we observed an increase in the number of writhes (41.25±11.36) versus WT (23.80±4.71), while in the tail immersion test no differences could be detected. Our results show that CRF/CRF1 receptors seem to be a protective role in latent pain sensitization induced by surgery and in the local inflammatory response to injury.
Insights
Corticotropin-releasing factor (CRF) and CRF1 receptors play a protective role against long-lasting pain and inflammation after surgery. Blocking CRF1 receptors exacerbates post-surgical hyperalgesia and inflammatory responses.
Area of Science:
- Neuroscience
- Immunology
- Pharmacology
Background:
- Corticotropin-releasing factor (CRF) influences pain perception.
- CRF1 receptors are potential targets for pain management.
Purpose of the Study:
- To investigate the role of CRF1 receptors in post-surgical pain and inflammation.
- To evaluate the impact of CRF1 receptor knockout on nociceptive thresholds and inflammatory markers.
Main Methods:
- Plantar incision surgery in wild-type (WT) and CRF1 receptor knockout (KO) mice.
- Assessment of mechanical nociceptive thresholds (von Frey test).
- Measurement of plasma extravasation (Evans blue) and writhing behavior.
Main Results:
- CRF1 receptor KO mice showed increased and prolonged hyperalgesia and plasma extravasation post-surgery compared to WT mice.
- Naloxone administration induced greater hyperalgesia in KO mice, suggesting impaired endogenous opioid modulation.
- CRF1 receptor deficiency was associated with increased inflammatory responses and pain sensitization.
Conclusions:
- CRF/CRF1 receptor signaling appears to have a protective effect against latent pain sensitization and inflammation following surgical injury.
- CRF1 receptors may modulate endogenous opioid pathways involved in pain resolution.

