Antinociceptive effect of Nephelium lappaceum L. fruit peel and the participation of nitric oxide, opioid receptors, and ATP-sensitive potassium channels

化学 药理学 阿片能 一氧化氮 伤害 类阿片 受体 (+)-纳洛酮 生物化学 医学 有机化学
作者
Alan Santos Oliveira,Laíza Santos Biano,David Nascimento Palmeira,D. Almeida,Mônica Lopes-Ferreira,Markus Kohlhoff,Jordano Augusto Carvalho Sousa,Geraldo Célio Brandão,Ana Mara de Oliveira e Silva,Renata Grespan,Enilton A. Camargo
出处
期刊:Frontiers in Pharmacology [Frontiers Media SA]
卷期号:14
标识
DOI:10.3389/fphar.2023.1287580
摘要

Introduction:Nephelium lappaceum L. (Sapindaceae) is a plant known as rambutan. It is used for various purposes in traditional medicine. Objective: We aimed to evaluate the antinociceptive effects of the ethanol extract of the fruit peel of N. lappaceum (EENL), the mechanisms involved in these effects, and the acute toxicity in zebrafish. Methods: We performed chromatography coupled to mass spectrometry, acute toxicity assay in zebrafish, and evaluation in mice submitted to models of nociception and locomotor activity. Results: We identified (epi)-catechin, procyanidin B, and ellagic acid and its derivatives in EENL. We did not find any toxicity in zebrafish embryos incubated with EENL. The locomotor activity of mice submitted to oral pretreatment with EENL was not changed, but it reduced the abdominal constrictions induced by acetic acid, the licking/biting time in both the first and second phase of formalin testing and capsaicin testing, and carrageenan-induced paw mechanical allodynia. Oral pretreatment with EENL increased latency time in the hot plate test. This antinociceptive effect was significantly reversed by naloxone, L-arginine, and glibenclamide respectively showing the participation of opioid receptors, nitric oxide, and KATP channels as mediators of EENL-induced antinociception. Conclusion: EENL causes antinociception with the participation of opioid receptors, nitric oxide, and KATP channels, and is not toxic to zebrafish.
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