N-palmitoylethanolamide synergizes the antinociception of morphine and gabapentin in the formalin test in mice

Author:

Déciga-Campos Myrna1,Jaramillo-Morales Osmar Antonio2,Espinosa-Juárez Josué Vidal3ORCID,Aguilera-Martínez María Elena1,Ventura-Martínez Rosa4,López-Muñoz Francisco Javier5ORCID

Affiliation:

1. Sección de Estudios de Posgrado e Investigación, Escuela Superior de Medicina, Instituto Politécnico Nacional , México , México

2. Departamento de Enfermería y Obstetricia, División de Ciencias de la Vida, Campus Irapuato-Salamanca, Universidad de Guanajuato , Irapuato, Guanajuato , México

3. Escuela de Ciencias Químicas Sede Ocozocoautla, Universidad Autónoma de Chiapas , Chiapas , México

4. Departamento de Farmacología, Facultad de Medicina, Universidad Nacional Autónoma de México , Delegación Coyoacán, México , México

5. Departamento de Farmacobiología, CINVESTAV-Sede Sur , Alcaldía Tlalpan, México , México

Abstract

Abstract Objective The antinociceptive pharmacological interaction between N-palmitoylethanolamide (PEA) and morphine (MOR), as well as gabapentin (GBP), was investigated to obtain synergistic antinociception at doses where side effects were minimal. In addition, the possible antinociceptive mechanism of PEA + MOR or PEA + GBP combinations was explored. Methods Individual dose-response curves (DRCs) of PEA, MOR and GBP were evaluated in female mice in which intraplantar nociception was induced with 2% formalin. Isobolographic method was used to detect the pharmacological interaction in the combination of PEA + MOR or PEA + GBP. Key findings The ED50 was calculated from the DRC; the order of potency was MOR > PEA > GBP. The isobolographic analysis was obtained at a 1:1 ratio to determine the pharmacological interaction. The experimental values of flinching (PEA + MOR, Zexp = 2.72 ± 0.2 μg/paw and PEA + GBP Zexp = 2.77 ± 0.19 μg/paw) were significantly lower than those calculated theoretically (PEA + MOR Zadd = 7.78 ± 1.07 and PEA + GBP Zadd = 24.05 ± 1.91 μg/paw), resulting in synergistic antinociception. Pretreatment with GW6471 and naloxone demonstrated that peroxisome proliferator-activated receptor alpha (PPARα) and opioid receptors are involved in both interactions. Conclusions These results suggest that MOR and GBP synergistically enhance PEA-induced antinociception through PPARα and opioid receptor mechanisms. Furthermore, the results suggest that combinations containing PEA with MOR or GBP could be of interest in aiding the treatment of inflammatory pain.

Funder

CINVESTAV

ESM-IPN

Publisher

Oxford University Press (OUP)

Subject

Pharmaceutical Science,Pharmacology

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