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Pain ; 156(5): 890-903, 2015 May.
Artículo en Inglés | MEDLINE | ID: mdl-25719612

RESUMEN

The pharmacological inhibition of anandamide (AEA) hydrolysis by fatty acid amide hydrolase (FAAH) attenuates pain in animal models of osteoarthritis (OA) but has failed in clinical trials. This may have occurred because AEA also activates transient receptor potential vanilloid type 1 (TRPV1), which contributes to pain development. Therefore, we investigated the effectiveness of the dual FAAH-TRPV1 blocker OMDM-198 in an MIA-model of osteoarthritic pain. We first investigated the MIA-induced model of OA by (1) characterizing the pain phenotype and degenerative changes within the joint using X-ray microtomography and (2) evaluating nerve injury and inflammation marker (ATF-3 and IL-6) expression in the lumbar dorsal root ganglia of osteoarthritic rats and differences in gene and protein expression of the cannabinoid CB1 receptors FAAH and TRPV1. Furthermore, we compared OMDM-198 with compounds acting exclusively on FAAH or TRPV1. Osteoarthritis was accompanied by the fragmentation of bone microstructure and destroyed cartilage. An increase of the mRNA levels of ATF3 and IL-6 and an upregulation of AEA receptors and FAAH in the dorsal root ganglia were observed. OMDM-198 showed antihyperalgesic effects in the OA model, which were comparable with those of a selective TRPV1 antagonist, SB-366,791, and a selective FAAH inhibitor, URB-597. The effect of OMDM-198 was attenuated by the CB1 receptor antagonist, AM-251, and by the nonpungent TRPV1 agonist, olvanil, suggesting its action as an "indirect" CB1 agonist and TRPV1 antagonist. These results suggest an innovative strategy for the treatment of OA, which may yield more satisfactory results than those obtained so far with selective FAAH inhibitors in human OA.


Asunto(s)
Amidohidrolasas/antagonistas & inhibidores , Carbamatos/administración & dosificación , Carbamatos/farmacología , Ganglios Espinales/metabolismo , Osteoartritis/fisiopatología , Dolor/tratamiento farmacológico , Canales Catiónicos TRPV/antagonistas & inhibidores , Canales Catiónicos TRPV/metabolismo , Factor de Transcripción Activador 3/genética , Factor de Transcripción Activador 3/metabolismo , Amidohidrolasas/genética , Amidohidrolasas/metabolismo , Anilidas/administración & dosificación , Anilidas/farmacología , Animales , Ácidos Araquidónicos/metabolismo , Benzamidas/farmacología , Capsaicina/análogos & derivados , Capsaicina/farmacología , Cinamatos/administración & dosificación , Cinamatos/farmacología , Modelos Animales de Enfermedad , Endocannabinoides/metabolismo , Ganglios Espinales/citología , Expresión Génica/efectos de los fármacos , Hiperalgesia/tratamiento farmacológico , Hiperalgesia/genética , Hiperalgesia/metabolismo , Inflamación/tratamiento farmacológico , Inflamación/inmunología , Interleucina-6/genética , Interleucina-6/metabolismo , Vértebras Lumbares/citología , Masculino , Dolor/inmunología , Dolor/metabolismo , Manejo del Dolor/métodos , Dimensión del Dolor/métodos , Piperidinas/farmacología , Alcamidas Poliinsaturadas/metabolismo , Pirazoles/farmacología , Ratas , Ratas Wistar , Receptor Cannabinoide CB1/antagonistas & inhibidores , Receptor Cannabinoide CB1/genética , Receptor Cannabinoide CB1/metabolismo , Canales Catiónicos TRPV/agonistas , Canales Catiónicos TRPV/genética
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