CNRS, Institut de Neurobiologie Alfred Fessard - FRC2118, Laboratoire de Neurobiologie Cellulaire et Moléculaire - UPR9040, bât. 32-33, F-91198 Gif sur Yvette, France.
Toxicon. 2010 Oct;56(5):759-67. doi: 10.1016/j.toxicon.2009.07.026. Epub 2009 Jul 29.
Caribbean ciguatoxin-1 (C-CTX-1) induced, after about 1h exposure, muscle membrane depolarisation and repetitive post-synaptic action potentials (APs) in frog neuromuscular preparations. This depolarising effect was also observed in a Ca(2+)-free medium with a strong enhancement of spontaneous quantal transmitter release, compared with control conditions. The ciguatoxin-induced increase in release could be accelerated when Ca(2+) was present in the extracellular medium. C-CTX-1 also enhanced nerve-evoked quantal acetylcholine (ACh) release. At normal neuromuscular junctions loaded with the fluorescent dye FM1-43, C-CTX-1 induced swelling of nerve terminals, an effect that was reversed by hyperosmotic d-mannitol. In myelinated axons, C-CTX-1 increased nodal membrane excitability, inducing spontaneous and repetitive APs. Also, the toxin enlarged the repolarising phase of APs in control and tetraethylammonium-treated axons. Overall, our data suggest that C-CTX-1 affects nerve excitability and neurotransmitter release at nerve terminals. We conclude that C-CTX-1-induced up-regulation of Na(+) channels and the inhibition of K(+) channels, at low nanomolar concentrations, produce a variety of functional dysfunctions that are in part responsible for the human muscle skeletal symptoms observed in ciguatera. All these dysfunctions seem to result from the subtle balance between ionic currents, intracellular Na(+) and Ca(2+) concentrations, and engaged second messengers.
加勒比海雪卡毒素-1(C-CTX-1)在暴露约 1 小时后,引起青蛙肌膜去极化和重复的突触后动作电位(APs)。在无钙介质中也观察到这种去极化作用,与对照条件相比,自发性量子递质释放强烈增强。当细胞外介质中存在 Ca(2+)时,雪卡毒素诱导的释放增加可以加速。C-CTX-1 还增强了神经诱发的量子乙酰胆碱(ACh)释放。在正常的肌神经接点上加载荧光染料 FM1-43 时,C-CTX-1 诱导神经末梢肿胀,高渗甘露醇可逆转该效应。在有髓轴突中,C-CTX-1 增加了节膜兴奋性,诱导自发性和重复的 APs。此外,毒素还使对照和四乙基铵处理的轴突中 APs 的复极化相增大。总体而言,我们的数据表明 C-CTX-1 影响神经末梢的神经兴奋性和神经递质释放。我们得出结论,C-CTX-1 在纳摩尔浓度下,通过上调 Na(+)通道和抑制 K(+)通道,引起多种功能障碍,这在一定程度上是导致雪卡中毒患者出现肌肉骨骼症状的原因。所有这些功能障碍似乎都源于离子电流、细胞内 Na(+)和 Ca(2+)浓度以及参与的第二信使之间的微妙平衡。