Laboratório de Membranas Excitáveis e Biologia Cardiovascular, Departamento de Bioquímica e Imunologia, Instituto de Ciências Biológicas, Universidade Federal de Minas Gerais, Belo Horizonte, MG, Brazil.
Laboratório de Membranas Excitáveis e Biologia Cardiovascular, Departamento de Bioquímica e Imunologia, Instituto de Ciências Biológicas, Universidade Federal de Minas Gerais, Belo Horizonte, MG, Brazil; Laboratório de Eletrofisiologia, Instituto Superior de Ciências Biomédicas, Universidade Estadual do Ceará, Fortaleza, CE, Brazil.
Eur J Pharmacol. 2015 Jun 5;756:22-9. doi: 10.1016/j.ejphar.2015.03.007. Epub 2015 Mar 17.
Recent studies have shown that many of plant-derived compounds interact with specific ion channels and thereby modulate many sensing mechanisms, such as nociception. The monoterpenoid carvacrol (5-isopropyl-2-methylphenol) has an anti-nociceptive effect related to a reduction in neuronal excitability and voltage-gated Na(+) channels (NaV) inhibition in peripheral neurons. However, the detailed mechanisms of carvacrol-induced inhibition of neuronal NaV remain elusive. This study explores the interaction between carvacrol and NaV in isolated dorsal root ganglia neurons. Carvacrol reduced the total voltage-gated Na(+) current and tetrodotoxin-resistant (TTX-R) Na(+) current component in a concentration-dependent manner. Carvacrol accelerates current inactivation and induced a negative-shift in voltage-dependence of steady-state fast inactivation in total and TTX-R Na(+) current. Furthermore, carvacrol slowed the recovery from inactivation. Carvacrol provoked a leftward shift in both the voltage-dependence of steady-state inactivation and activation of the TTX-R Na(+) current component. In addition, carvacrol-induced inhibition of TTX-R Na(+) current was enhanced by an increase in stimulation frequency and when neurons were pre-conditioned with long depolarization pulse (5s at -50 mV). Taken all results together, we herein demonstrated that carvacrol affects NaV gating properties. The present findings would help to explain the mechanisms underlying the analgesic activity of carvacrol.
最近的研究表明,许多植物衍生化合物与特定的离子通道相互作用,从而调节许多感觉机制,如痛觉。单萜香芹酚(5-异丙基-2-甲基苯酚)具有抗伤害感受作用,与神经元兴奋性降低和外周神经元电压门控钠离子通道(NaV)抑制有关。然而,香芹酚诱导的神经元 NaV 抑制的详细机制仍不清楚。本研究探讨了香芹酚与分离的背根神经节神经元中 NaV 的相互作用。香芹酚呈浓度依赖性地减少总电压门控钠离子电流和河豚毒素抗性(TTX-R)钠离子电流成分。香芹酚加速电流失活,并诱导总和 TTX-R Na(+)电流的稳态快速失活的电压依赖性负移。此外,香芹酚使失活恢复减慢。香芹酚使稳态失活和 TTX-R Na(+)电流成分的激活的电压依赖性都向左移动。此外,当神经元用长去极化脉冲(-50 mV 时 5 秒)预处理时,刺激频率增加会增强香芹酚诱导的 TTX-R Na(+)电流抑制。综上所述,我们在此证明香芹酚影响 NaV 门控特性。本研究结果有助于解释香芹酚镇痛作用的机制。