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两种乌头碱衍生物的定量电生理学评估:探索镇痛药物机制的窗口。

Quantitative Electrophysiological Evaluation of the Analgesic Efficacy of Two Lappaconitine Derivatives: A Window into Antinociceptive Drug Mechanisms.

机构信息

College of Life Science, Northwest Normal University, Lanzhou, 730070, China.

The Rural Development Academy, Northwest Normal University, Lanzhou, 730070, China.

出版信息

Neurosci Bull. 2021 Nov;37(11):1555-1569. doi: 10.1007/s12264-021-00774-w. Epub 2021 Sep 22.

Abstract

Quantitative evaluation of analgesic efficacy improves understanding of the antinociceptive mechanisms of new analgesics and provides important guidance for their development. Lappaconitine (LA), a potent analgesic drug extracted from the root of natural Aconitum species, has been clinically used for years because of its effective analgesic and non-addictive properties. However, being limited to ethological experiments, previous studies have mainly investigated the analgesic effect of LA at the behavioral level, and the associated antinociceptive mechanisms are still unclear. In this study, electrocorticogram (ECoG) technology was used to investigate the analgesic effects of two homologous derivatives of LA, Lappaconitine hydrobromide (LAH) and Lappaconitine trifluoroacetate (LAF), on Sprague-Dawley rats subjected to nociceptive laser stimuli, and to further explore their antinociceptive mechanisms. We found that both LAH and LAF were effective in reducing pain, as manifested in the remarkable reduction of nocifensive behaviors and laser-evoked potentials (LEPs) amplitudes (N2 and P2 waves, and gamma-band oscillations), and significantly prolonged latencies of the LEP-N2/P2. These changes in LEPs reflect the similar antinociceptive mechanism of LAF and LAH, i.e., inhibition of the fast signaling pathways. In addition, there were no changes in the auditory-evoked potential (AEP-N1 component) before and after LAF or LAH treatment, suggesting that neither drug had a central anesthetic effect. Importantly, compared with LAH, LAF was superior in its effects on the magnitudes of gamma-band oscillations and the resting-state spectra, which may be associated with their differences in the octanol/water partition coefficient, degree of dissociation, toxicity, and glycine receptor regulation. Altogether, jointly applying nociceptive laser stimuli and ECoG recordings in rats, we provide solid neural evidence for the analgesic efficacy and antinociceptive mechanisms of derivatives of LA.

摘要

定量评估镇痛效果有助于深入了解新型镇痛药的抗伤害机制,并为其开发提供重要指导。拉帕碱(LA)是从天然乌头属植物的根部提取的一种强效镇痛药,因其具有有效的镇痛和非成瘾性而在临床上应用多年。然而,由于受到行为学实验的限制,以前的研究主要在行为水平上研究 LA 的镇痛效果,其相关的抗伤害机制仍不清楚。在这项研究中,我们使用脑电描记术(ECoG)技术研究了 LA 的两个同源衍生物——氢溴酸拉帕碱(LAH)和三氟乙酸拉帕碱(LAF)对遭受伤害性激光刺激的 Sprague-Dawley 大鼠的镇痛作用,并进一步探讨了它们的镇痛机制。我们发现,LAH 和 LAF 均能有效减轻疼痛,表现为明显减少伤害性行为和激光诱发电位(LEP)幅度(N2 和 P2 波,以及γ波段振荡),并显著延长了 LEP-N2/P2 的潜伏期。这些 LEP 的变化反映了 LAF 和 LAH 的相似镇痛机制,即抑制快速信号通路。此外,在 LAF 或 LAH 治疗前后,听觉诱发电位(AEP-N1 成分)均无变化,表明这两种药物均无中枢麻醉作用。重要的是,与 LAH 相比,LAF 在γ波段振荡幅度和静息状态频谱方面的效果更为优越,这可能与其在辛醇/水分配系数、离解度、毒性和甘氨酸受体调节方面的差异有关。总之,我们在大鼠中联合应用伤害性激光刺激和 ECoG 记录,为 LA 衍生物的镇痛效果和抗伤害机制提供了可靠的神经学证据。

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