Department of Biomedical Sciences, City University of Hong Kong, Tat Chee Avenue, Hong Kong, Hong Kong.
State Key Laboratory in Marine Pollution, City University of Hong Kong, Tat Chee Avenue, Hong Kong, Hong Kong.
Mol Neurobiol. 2018 Aug;55(8):6769-6787. doi: 10.1007/s12035-018-0875-5. Epub 2018 Jan 18.
Consumption of fish containing ciguatera toxins or ciguatoxins (CTXs) causes ciguatera fish poisoning (CFP). In some patients, CFP recurrence occurs even years after exposure related to CTXs accumulation. Pacific CTX-1 (P-CTX-1) is one of the most potent natural substances known that causes predominantly neurological symptoms in patients; however, the underlying pathogenies of CFP remain unknown. Using clinically relevant neurobehavioral tests and electromyography (EMG) to assess effects of P-CTX-1 during the 4 months after exposure, recurrent motor strength deficit occurred in mice exposed to P-CTX-1. We detected irreversible motor strength deficits accompanied by reduced EMG activity, demyelination, and slowing of motor nerve conduction, whereas control unexposed mice fully recovered in 1 month after peripheral nerve injury. Finally, to uncover the mechanism underlying CFP, we detected reduction of spontaneous firing rate of motor cortical neurons even 6 months after exposure and increased number of glial fibrillary acidic protein (GFAP)-immunoreactive astrocytes. Increased numbers of motor cortical neuron apoptosis were detected by dUTP-digoxigenin nick end labeling assay along with activation of caspase 3. Taken together, our study demonstrates that persistence of P-CTX-1 in the nervous system induces irreversible motor deficit that correlates well with excitotoxicity and neurodegeneration detected in the motor cortical neurons.
食用含有雪卡毒素或雪卡毒素(CTXs)的鱼类会导致雪卡鱼中毒(CFP)。在一些患者中,即使在接触 CTXs 积累相关物质多年后,仍会复发 CFP。太平洋 CTX-1(P-CTX-1)是已知最有效的天然物质之一,会导致患者出现主要的神经症状;然而,CFP 的潜在发病机制仍不清楚。通过使用临床相关的神经行为测试和肌电图(EMG)来评估暴露于 P-CTX-1 后 4 个月期间的 P-CTX-1 的影响,我们发现接触 P-CTX-1 的小鼠会出现反复的运动力量缺陷。我们检测到不可逆的运动力量缺陷伴随着 EMG 活动减少、脱髓鞘和运动神经传导速度减慢,而对照未暴露的小鼠在周围神经损伤后 1 个月内完全恢复。最后,为了揭示 CFP 的潜在机制,我们甚至在暴露后 6 个月检测到运动皮质神经元的自发放电率降低,以及神经胶质纤维酸性蛋白(GFAP)免疫反应性星形胶质细胞数量增加。通过末端标记法检测到运动皮质神经元的凋亡数量增加,同时 caspase 3 被激活。综上所述,我们的研究表明,P-CTX-1 在神经系统中的持续存在会导致不可逆的运动缺陷,这与运动皮质神经元中检测到的兴奋性毒性和神经退行性变密切相关。