首页> 外文期刊>Progress in Neuro-Psychopharmacology & Biological Psychiatry: An International Research, Review and News Journal >pH-dependent inhibition of tetrodotoxin-resistant Na+ channels by diclofenac in rat nociceptive neurons
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pH-dependent inhibition of tetrodotoxin-resistant Na+ channels by diclofenac in rat nociceptive neurons

机译:在大鼠伤害性神经元中的双氯芬酰基依赖于抗叶毒素抗性Na +通道的pH依赖性抑制

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Non-steroidal anti-inflammatory drugs (NSAIDs) are widely used for the treatment of inflammatory pain. It is well established that NSAIDs exert their analgesic effects by inhibiting cyclooxygenase to prevent the production of prostaglandins; however, several NSAIDs including diclofenac also modulate other ion channels expressed in nociceptive neurons. In this study, we investigated the pH-dependent effects of diclofenac on tetrodotoxin-resistant (TTX-R) Na+ channels in rat trigeminal sensory neurons by using the whole-cell patch clamp technique. Diclofenac decreased the peak amplitude of TTX-R Na+ currents (I-Na) in a concentration dependent manner. While diclofenac had little effect on the voltage-activation relationship, it significantly shifted the steady-state fast inactivation relationship toward hyperpolarized potentials. Diclofenac increased the extent of use-dependent inhibition of TTX-R Na+ currents. Diclofenac also significantly accelerated the development of inactivation and retarded the recovery from inactivation of TTX-R Na+ channels. The effects of diclofenac on TTX-R Na+ channels were stronger at pH 6.0 than at pH 7.4 for most of the parameters tested. Considering that the extracellular pH falls in inflamed tissues, and that TTX-R Na+ channels expressed on nociceptive neurons are implicated in the prostaglandin-mediated development and maintenance of inflammatory hyperalgesia, our findings could provide an additional analgesic effect of diclofenac under acidic pH conditions. (C) 2015 Elsevier Inc. All rights reserved.
机译:非甾体抗炎药(NSAIDs)广泛用于治疗炎症性疼痛。众所周知,非甾体抗炎药通过抑制环氧合酶来发挥镇痛作用,从而阻止前列腺素的产生;然而,包括双氯芬酸在内的几种非甾体抗炎药也能调节伤害感受神经元中表达的其他离子通道。在本研究中,我们采用全细胞膜片钳技术研究了双氯芬酸对大鼠三叉神经感觉神经元中河豚毒素抗性(TTX-R)钠通道的pH依赖性影响。双氯芬酸以浓度依赖性方式降低TTX-R钠电流(I-Na)的峰值振幅。虽然双氯芬酸对电压-激活关系几乎没有影响,但它显著地将稳态快速失活关系转向超极化电位。双氯芬酸增加了TTX-R Na+电流的使用依赖性抑制程度。双氯芬酸还显著加快了失活的发展,并延缓了TTX-R钠通道失活后的恢复。在大多数测试参数中,双氯芬酸对TTX-R Na+通道的影响在pH值为6.0时比在pH值为7.4时更强。考虑到炎症组织中细胞外pH值下降,并且伤害感受神经元上表达的TTX-R钠离子通道与前列腺素介导的炎症性痛觉过敏的发生和维持有关,我们的研究结果可能提供双氯芬酸在酸性pH条件下的额外镇痛作用。(C) 2015爱思唯尔公司版权所有。

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