Pharmacological properties of S1RA, a new sigma‐1 receptor antagonist that inhibits neuropathic pain and activity‐induced spinal sensitization

神经病理性疼痛 药理学 Sigma-1受体 伤害 敏化 受体 医学 敌手 受体拮抗剂 神经科学 兴奋剂 生物 内科学 免疫学
作者
Luz Romero,Daniel Zamanillo,Xavier Nadal,R. Sánchez‐Arroyos,Ivan Rivera‐Arconada,Albert Dordal,Ana Montero,Anna Muro,A. Bura-Rivière,C. Segalés,M. Laloya,Enrique Hernández,Enrique Portillo‐Salido,Marisol Escriche,Xavier Codony,Gregorio Encina,Javier Burgueño,Manuel Merlos,JM Baeyens,Jesús Giraldo
出处
期刊:British Journal of Pharmacology [Wiley]
卷期号:166 (8): 2289-2306 被引量:184
标识
DOI:10.1111/j.1476-5381.2012.01942.x
摘要

BACKGROUND AND PURPOSE: The sigma-1 (σ(1) ) receptor is a ligand-regulated molecular chaperone that has been involved in pain, but there is limited understanding of the actions associated with its pharmacological modulation. Indeed, the selectivity and pharmacological properties of σ(1) receptor ligands used as pharmacological tools are unclear and the demonstration that σ(1) receptor antagonists have efficacy in reversing central sensitization-related pain sensitivity is still missing. EXPERIMENTAL APPROACH: The pharmacological properties of a novel σ(1) receptor antagonist (S1RA) were first characterized. S1RA was then used to investigate the effect of pharmacological antagonism of σ(1) receptors on in vivo nociception in sensitizing conditions and on in vitro spinal cord sensitization in mice. Drug levels and autoradiographic, ex vivo binding for σ(1) receptor occupancy were measured to substantiate behavioural data. KEY RESULTS: Formalin-induced nociception (both phases), capsaicin-induced mechanical hypersensitivity and sciatic nerve injury-induced mechanical and thermal hypersensitivity were dose-dependently inhibited by systemic administration of S1RA. Occupancy of σ(1) receptors in the CNS was significantly correlated with the antinociceptive effects. No pharmacodynamic tolerance to the antiallodynic and antihyperalgesic effect developed following repeated administration of S1RA to nerve-injured mice. As a mechanistic correlate, electrophysiological recordings demonstrated that pharmacological antagonism of σ(1) receptors attenuated the wind-up responses in spinal cords sensitized by repetitive nociceptive stimulation. CONCLUSIONS AND IMPLICATIONS: These findings contribute to evidence identifying the σ(1) receptor as a modulator of activity-induced spinal sensitization and pain hypersensitivity, and suggest σ(1) receptor antagonists as potential novel treatments for neuropathic pain.
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