首页> 美国卫生研究院文献>Toxins >Determination of Gonyautoxin-4 in Echinoderms and Gastropod Matrices by Conversion to Neosaxitoxin Using 2-Mercaptoethanol and Post-Column Oxidation Liquid Chromatography with Fluorescence Detection
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Determination of Gonyautoxin-4 in Echinoderms and Gastropod Matrices by Conversion to Neosaxitoxin Using 2-Mercaptoethanol and Post-Column Oxidation Liquid Chromatography with Fluorescence Detection

机译:2-巯基乙醇与柱后氧化液相色谱-荧光检测法测定棘皮动物和腹足动物基质中Gonyautoxin-4的含量

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摘要

Paralytic Shellfish Toxin blooms are common worldwide, which makes their monitoring crucial in the prevention of poisoning incidents. These toxins can be monitored by a variety of techniques, including mouse bioassay, receptor binding assay, and liquid chromatography with either mass spectrometric or pre- or post-column fluorescence detection. The post-column oxidation liquid chromatography with fluorescence detection method, used routinely in our laboratory, has been shown to be a reliable method for monitoring paralytic shellfish toxins in mussel, scallop, oyster and clam species. However, due to its high sensitivity to naturally fluorescent matrix interferences, when working with unconventional matrices, there may be problems in identifying toxins because of naturally fluorescent interferences that co-elute with the toxin peaks. This can lead to erroneous identification. In this study, in order to overcome this challenge in echinoderm and gastropod matrices, we optimized the conversion of Gonyautoxins 1 and 4 to Neosaxitoxin with 2-mercaptoethanol. We present a new and less time-consuming method with a good recovery (82.2%, RSD 1.1%, n = 3), requiring only a single reaction step.
机译:麻痹性贝类毒素大量繁殖在世界范围内很普遍,这使得对其进行监控对于预防中毒事件至关重要。这些毒素可以通过多种技术进行监测,包括小鼠生物测定,受体结合测定以及采用质谱或柱前或柱后荧光检测的液相色谱。在我们实验室中常规使用的采用荧光检测方法的柱后氧化液相色谱法已被证明是监测贻贝,扇贝,牡蛎和蛤类中麻痹性贝类毒素的可靠方法。但是,由于其对天然荧光基质干扰物的高度敏感性,因此在使用非常规基质时,由于与毒素峰共洗脱的天然荧光干扰物,在鉴定毒素时可能会遇到问题。这可能导致错误的标识。在这项研究中,为了克服棘手动物和腹足类动物的这一挑战,我们优化了2-巯基乙醇将Gonyautoxins 1和4转化为Neosaxitoxin。我们提出了一种新的,耗时少的方法,具有良好的回收率(82.2%,RSD 1.1%,n = 3),仅需一个反应步骤。

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