Department of Molecular Pathobiology, College of Dentistry, New York University, New York, NY, USA.
NYU Pain Research Center, New York University, New York, NY, USA.
Channels (Austin). 2022 Dec;16(1):198-215. doi: 10.1080/19336950.2022.2103234.
Voltage-gated sodium and calcium channels (VGSCs and VGCCs) play an important role in the modulation of physiologically relevant processes in excitable cells that range from action potential generation to neurotransmission. Once their expression and/or function is altered in disease, specific pharmacological approaches become necessary to mitigate the negative consequences of such dysregulation. Several classes of small molecules have been developed with demonstrated effectiveness on VGSCs and VGCCs; however, off-target effects have also been described, limiting their use and spurring efforts to find more specific and safer molecules to target these channels. There are a great number of plants and herbal preparations that have been empirically used for the treatment of diseases in which VGSCs and VGCCs are involved. Some of these natural products have progressed to clinical trials, while others are under investigation for their action mechanisms on signaling pathways, including channels. In this review, we synthesize information from ~30 compounds derived from natural sources like plants and fungi and delineate their effects on VGSCs and VGCCs in human disease, particularly pain. [Figure: see text].
电压门控钠和钙通道(VGSCs 和 VGCCs)在调节兴奋性细胞中与生理相关的过程中发挥着重要作用,这些过程范围从动作电位产生到神经递质传递。一旦它们在疾病中的表达和/或功能发生改变,就需要特定的药理学方法来减轻这种失调的负面影响。已经开发出几类对 VGSCs 和 VGCCs 具有显著效果的小分子;然而,也描述了脱靶效应,限制了它们的使用,并促使人们努力寻找更具特异性和更安全的分子来靶向这些通道。有大量的植物和草药制剂已经被经验性地用于治疗涉及 VGSCs 和 VGCCs 的疾病。其中一些天然产物已经进入临床试验,而其他天然产物则在研究其对信号通路(包括通道)的作用机制。在这篇综述中,我们综合了来自植物和真菌等天然来源的约 30 种化合物的信息,并描述了它们在人类疾病(特别是疼痛)中对 VGSCs 和 VGCCs 的影响。[图:见正文]。