Nerolidol exhibits antinociceptive and anti‐inflammatory activity: involvement of the<scp>GABA</scp>ergic system and proinflammatory cytokines
Неролидол проявляет антинокацептивную и противовоспалительную активность: участие ГАМКергической системы и провоспалительных цитокинов
2015-11-02
SCID: 54.1/vqx8q7b6
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Anti-inflammatory activityAntinociceptive activityGABAergic systemNerolidolTNF-α and IL-1β suppression
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Abstract (AI)
Nerolidol, an acyclic sesquiterpene found as a major constituent of several essential oils, has several pharmacological activities, but its action in pain processes has never been studied. The purpose of our research was to evaluate the antinociceptive and anti-inflammatory activities of nerolidol, as well as possible mechanisms of action, in experimental mouse models of pain. Antinociceptive activity was evaluated using the acetic acid-induced writhing test, the formalin test, and the hot-plate test. The nerolidol-treated group showed lesser acetic acid-induced abdominal contractions than the control group in all of the three doses tested (200, 300, and 400 mg/kg, p.o.). The formalin test doses of 300 and 400 mg/kg p.o. inhibited licking time, in both the first phase and the second phase. In the hot-plate test, nerolidol did not alter latency at any of the observed time points. Motor coordination, evaluated through the rotarod test, was not hindered in animals treated with nerolidol. Regarding the mechanism of action, the antinociceptive activity of nerolidol is related to the GABAergic system, and not to the opioidergic or ATP-sensitive K(+) channels. Treatment with nerolidol reduced carrageenan-induced paw edema. In the model of carrageenan-induced peritonitis, nerolidol decreased the influx of polymorphonuclear cells and also reduced levels of tumor necrosis factor (TNF-α) in peritoneal lavage. Nerolidol reduced production of interleukin 1 beta (IL-1β) in LPS-stimulated, peritoneal macrophages. Thus, these results showed that nerolidol has antinociceptive activity with possible involvement of the GABAergic system, and anti-inflammatory activity, attributed to the suppression of TNF-α and IL-1β proinflammatory cytokines.
Key Findings
1
In carrageenan-induced peritonitis, nerolidol decreased polymorphonuclear cell influx and reduced TNF-α levels in peritoneal lavage.
2
Nerolidol at 300 and 400 mg/kg (p.o.) inhibited licking time in both phases of the formalin test, indicating peripheral and central antinociceptive activity.
3
Nerolidol demonstrated anti-inflammatory effects by reducing carrageenan-induced paw edema in mice.
4
Nerolidol did not change nociceptive latency in the hot-plate test, suggesting no effect on supraspinal thermal nociception.
5
Nerolidol did not impair motor coordination in the rotarod test, indicating antinociception is not due to sedation or motor deficit.
6
Nerolidol produced dose-dependent antinociceptive effects in mice, reducing acetic acid-induced abdominal contractions at 200, 300, and 400 mg/kg (p.o.).
7
Nerolidol reduced IL-1β production in LPS-stimulated peritoneal macrophages, indicating suppression of proinflammatory cytokines.
8
The antinociceptive action of nerolidol involves the GABAergic system but not the opioidergic system or ATP-sensitive K+ channels.
Research Object
Nerolidol (an acyclic sesquiterpene) used in experimental mouse models of pain and inflammation
Research Subject
Antinociceptive and anti-inflammatory effects of nerolidol and their mechanisms, specifically involvement of the GABAergic system and suppression of proinflammatory cytokines (TNF-α, IL-1β)
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2015-11-02
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