State Key Laboratory of Drug Research, Shanghai Institute of Materia Medica, Chinese Academy of Sciences, Shanghai, 201203, China.
Natural Product Research Center, Shanghai Institute of Materia Medica, Chinese Academy of Sciences, Shanghai, 201203, China.
Acta Pharmacol Sin. 2023 Sep;44(9):1768-1776. doi: 10.1038/s41401-023-01084-9. Epub 2023 May 4.
Voltage-gated sodium channel 1.7 (Nav1.7) remains one of the most promising drug targets for pain relief. In the current study, we conducted a high-throughput screening of natural products in our in-house compound library to discover novel Nav1.7 inhibitors, then characterized their pharmacological properties. We identified 25 naphthylisoquinoline alkaloids (NIQs) from Ancistrocladus tectorius to be a novel type of Nav1.7 channel inhibitors. Their stereostructures including the linkage modes of the naphthalene group at the isoquinoline core were revealed by a comprehensive analysis of HRESIMS, 1D, and 2D NMR spectra as well as ECD spectra and single-crystal X-ray diffraction analysis with Cu Kα radiation. All the NIQs showed inhibitory activities against the Nav1.7 channel stably expressed in HEK293 cells, and the naphthalene ring in the C-7 position displayed a more important role in the inhibitory activity than that in the C-5 site. Among the NIQs tested, compound 2 was the most potent with an IC of 0.73 ± 0.03 µM. We demonstrated that compound 2 (3 µM) caused dramatical shift of steady-state slow inactivation toward the hyperpolarizing direction (V values were changed from -39.54 ± 2.77 mV to -65.53 ± 4.39 mV, which might contribute to the inhibition of compound 2 against the Nav1.7 channel. In acutely isolated dorsal root ganglion (DRG) neurons, compound 2 (10 μM) dramatically suppressed native sodium currents and action potential firing. In the formalin-induced mouse inflammatory pain model, local intraplantar administration of compound 2 (2, 20, 200 nmol) dose-dependently attenuated the nociceptive behaviors. In summary, NIQs represent a new type of Nav1.7 channel inhibitors and may act as structural templates for the following analgesic drug development.
电压门控钠离子通道 1.7(Nav1.7)仍然是缓解疼痛最有前途的药物靶点之一。在本研究中,我们对内部化合物库中的天然产物进行了高通量筛选,以发现新型 Nav1.7 抑制剂,并对其药理特性进行了表征。我们从山乌龟中鉴定出 25 种萘基异喹啉生物碱(NIQ),它们是一种新型的 Nav1.7 通道抑制剂。通过对 HRESIMS、1D 和 2D NMR 谱以及 ECD 谱和 Cu Kα 辐射的单晶 X 射线衍射分析的综合分析,揭示了它们的立体结构,包括异喹啉核上萘环的连接方式。所有 NIQ 均显示出对稳定表达于 HEK293 细胞中的 Nav1.7 通道的抑制活性,并且 C-7 位的萘环在抑制活性中比 C-5 位更为重要。在所测试的 NIQ 中,化合物 2 最为有效,IC 为 0.73±0.03µM。我们证明,化合物 2(3µM)导致稳态慢失活向超极化方向发生剧烈偏移(V 值从-39.54±2.77mV 变为-65.53±4.39mV,这可能有助于抑制化合物 2 对 Nav1.7 通道的作用。在急性分离的背根神经节(DRG)神经元中,化合物 2(10µM)显著抑制了内源性钠电流和动作电位发放。在福尔马林诱导的小鼠炎症性疼痛模型中,局部皮内给予化合物 2(2、20、200nmol)呈剂量依赖性减轻伤害性行为。总之,NIQ 代表了一种新型的 Nav1.7 通道抑制剂,可能作为后续镇痛药物开发的结构模板。