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鱼类中雪卡毒素的检测进展。

Advances in Detecting Ciguatoxins in Fish.

机构信息

Department of Chemistry, School of Pure Sciences, College of Engineering, Science and Technology, Fiji National University, P.O. Box 3722 Samabula, Suva, Fiji.

Department of Food Technology and Home Economics, School of Applied Sciences, College of Engineering, Science and Technology, Fiji National University, P.O. Box 3722 Samabula, Suva, Fiji.

出版信息

Toxins (Basel). 2020 Jul 31;12(8):494. doi: 10.3390/toxins12080494.

Abstract

Ciguatera fish poisoning (CFP) is currently the most common marine biotoxin food poisoning worldwide, associated with human consumption of circumtropical fish and marine invertebrates that are contaminated with ciguatoxins. Ciguatoxins are very potent sodium-channel activator neurotoxins, that pose risks to human health at very low concentrations (>0.01 ng per g of fish flesh in the case of the most potent Pacific ciguatoxin). Symptoms of CFP are nonspecific and intoxication in humans is often misdiagnosed. Presently, there is no medically approved treatment of ciguatera. Therefore, to mitigate the risks of CFP, reliable detection of ciguatoxins prior to consumption of fish tissue is acutely needed, which requires application of highly sensitive and quantitative analytical tests. During the last century a number of methods have been developed to identify and quantify the concentration of ciguatoxins, including in vivo animal assays, cell-based assays, receptor binding assays, antibody-based immunoassays, electrochemical methods, and analytical techniques based on coupling of liquid chromatography with mass spectrometry. Development of these methods, their various advantages and limitations, as well as future challenges are discussed in this review.

摘要

雪卡鱼中毒(CFP)是目前全球最常见的海洋生物毒素食物中毒,与人类食用受雪卡毒素污染的环热带鱼类和海洋无脊椎动物有关。雪卡毒素是非常有效的钠离子通道激活神经毒素,即使在非常低的浓度下(例如最有效的太平洋雪卡毒素,每克鱼肉中浓度超过 0.01 纳克)也会对人类健康构成威胁。CFP 的症状是非特异性的,人类中毒常常被误诊。目前,雪卡中毒尚无医学认可的治疗方法。因此,为了降低 CFP 的风险,迫切需要在食用鱼组织之前可靠地检测雪卡毒素,这需要应用高度敏感和定量的分析测试。在上个世纪,已经开发出了多种方法来识别和定量雪卡毒素的浓度,包括体内动物试验、基于细胞的试验、受体结合试验、基于抗体的免疫测定、电化学方法以及基于液相色谱与质谱联用的分析技术。本文综述了这些方法的发展、各自的优缺点以及未来的挑战。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3b0c/7472146/9695d66f6652/toxins-12-00494-g001.jpg

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