Department of Pharmacology, Shenyang Pharmaceutical University, Shenyang 110016, China.
Department of Biochemistry, Shenyang Pharmaceutical University, Shenyang 110016, China.
Int J Mol Sci. 2022 Jun 25;23(13):7065. doi: 10.3390/ijms23137065.
Trigeminal neuralgia (TN) is a common type of peripheral neuralgia in clinical practice, which is usually difficult to cure. Common analgesic drugs are difficult for achieving the desired analgesic effect. Syb-prII-1 is a β-type scorpion neurotoxin isolated from the scorpion venom of It has an important influence on the voltage-gated sodium channel (VGSCs), especially closely related to Nav1.8 and Nav1.9. To explore whether Syb-prII-1 has a good analgesic effect on TN, we established the Sprague Dawley (SD) rats' chronic constriction injury of the infraorbital nerve (IoN-CCI) model. Behavioral, electrophysiological, Western blot, and other methods were used to verify the model. It was found that Syb-prII-1 could significantly relieve the pain behavior of IoN-CCI rats. After Syb-prII-1 was given, the phosphorylation level of the mitogen-activated protein kinases (MAPKs) pathway showed a dose-dependent decrease after IoN-CCI injury. Moreover, Syb-prII-1(4.0 mg/kg) could significantly change the steady-state activation and inactivation curves of Nav1.8. The steady-state activation and inactivation curves of Nav1.9 were similar to those of Nav1.8, but there was no significant difference. It was speculated that it might play an auxiliary role. The binding mode, critical residues, and specific interaction type of Syb-prII-1 and VSD2 were clarified with computational simulation methods. Our results indicated that Syb-prII-1 could provide a potential treatment for TN by acting on the Nav1.8 target.
三叉神经痛(TN)是临床常见的一种周围性神经痛,通常难以治愈。常用的镇痛药物难以达到理想的镇痛效果。Syb-prII-1 是从蝎子毒液中分离得到的一种β型蝎子神经毒素,对电压门控钠离子通道(VGSCs)有重要影响,特别是与 Nav1.8 和 Nav1.9 密切相关。为了探讨 Syb-prII-1 对 TN 是否有良好的镇痛作用,我们建立了 Sprague Dawley(SD)大鼠眶下神经慢性缩窄性损伤(IoN-CCI)模型。采用行为学、电生理学、Western blot 等方法验证模型。结果发现,Syb-prII-1 可显著缓解 IoN-CCI 大鼠的疼痛行为。给予 Syb-prII-1 后,IoN-CCI 损伤后 MAPKs 通路的磷酸化水平呈剂量依赖性下降。此外,Syb-prII-1(4.0mg/kg)可显著改变 Nav1.8 的稳态激活和失活曲线。Nav1.9 的稳态激活和失活曲线与 Nav1.8 相似,但无显著性差异。推测可能起辅助作用。采用计算模拟方法阐明了 Syb-prII-1 与 VSD2 的结合模式、关键残基和特定相互作用类型。研究结果表明,Syb-prII-1 可能通过作用于 Nav1.8 靶点为 TN 提供潜在的治疗方法。