β–Lactam TRPM8 Antagonist RGM8-51 Displays Antinociceptive Activity in Different Animal Models

Impacto

Downloads

Downloads per month over past year

Martín Escura, Cristina and Medina Peris, Alicia and Spear, Luke A. and de la Torre Martínez, Roberto and Olivos Oré, Luis A. and Barahona Gomariz, María Victoria and González Rodríguez de Castro, Sara and Fernández Ballester, Gregorio and Fernández Carvajal, Asia and Rodríguez Artalejo, Antonio and Ferrer Montiel, Antonio and González Muñiz, Rosario (2022) β–Lactam TRPM8 Antagonist RGM8-51 Displays Antinociceptive Activity in Different Animal Models. International Journal of Molecular Sciences, 23 (5). p. 2692. ISSN 1422-0067

[thumbnail of ijms-23-02692-v3.pdf]
Preview
PDF
Creative Commons Attribution.

5MB

Official URL: https://doi.org/10.3390/ijms23052692




Abstract

Transient receptor potential melastatin subtype 8 (TRPM8) is a cation channel extensively expressed in sensory neurons and implicated in different painful states. However, the effectiveness of TRPM8 modulators for pain relief is still a matter of discussion, since structurally diverse modulators lead to different results, depending on the animal pain model. In this work, we described the antinociceptive activity of a β–lactam derivative, RGM8-51, showing good TRPM8 antagonist activity, and selectivity against related thermoTRP channels and other pain-mediating receptors. In primary cultures of rat dorsal root ganglion (DRG) neurons, RGM8-51 potently reduced menthol-evoked neuronal firing without affecting the major ion conductances responsible for action potential generation. This compound has in vivo antinociceptive activity in response to cold, in a mouse model of oxaliplatin-induced peripheral neuropathy. In addition, it reduces cold, mechanical and heat hypersensitivity in a rat model of neuropathic pain arising after chronic constriction of the sciatic nerve. Furthermore, RGM8-51 exhibits mechanical hypersensitivity-relieving activity, in a mouse model of NTG-induced hyperesthesia. Taken together, these preclinical results substantiate that this TRPM8 antagonist is a promising pharmacological tool to study TRPM8-related diseases.


Item Type:Article
Uncontrolled Keywords:TRPM8 channels; antagonist; β–lactam; oxaliplatin-induced peripheral neuropathy; CCI chronic neuropathic; nociception; NTG-induced hyperesthesia
Subjects:Medical sciences > Veterinary > Veterinary pharmacology
ID Code:75103
Deposited On:27 Oct 2022 10:47
Last Modified:07 Nov 2022 07:44

Origin of downloads

Repository Staff Only: item control page