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Development of Ultra-Performance Liquid Chromatography with Post-Column Fluorescent Derivatization for the Rapid Detection of Saxitoxin Analogues and Analysis of Bivalve Monitoring Samples

机译:柱后荧光衍生超高效液相色谱法开发用于快速检测沙毒素的类似物和双壳类动物监测样品的分析

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摘要

Saxitoxin (STX) and its analogues produced by toxic dinoflagellates accumulate in bivalves, and routine monitoring of bivalves is important to prevent cases of human poisoning. In this study, we describe a rapid detection method for the analysis of STXs using ultra-performance liquid chromatography with post-column fluorescent detection and to investigate water depths and sampling points optimal for shellfish toxin monitoring. Cultured scallops ( ) and mussels ( ) collected from various water depths and sampling points were used in this study. Irrespective of bivalve species, toxin concentrations in bivalves were lower at deeper water depths. The toxin concentrations of bivalves did not differ greatly when bivalves were collected from the same bay. Although the levels of contamination of bivalves with STXs can depend on various environmental and geographical factors, our findings are useful for formulating a sampling protocol for the prevention of harvesting contaminated shellfish.
机译:毒性鞭毛鞭毛虫产生的毒素(STX)及其类似物在双壳类动物体内积累,对双壳类动物进行常规监测对于预防人中毒很重要。在这项研究中,我们描述了一种使用超高效液相色谱柱后荧光检测分析STX的快速检测方法,并研究了用于监测贝类毒素的最佳水深和采样点。本研究使用从不同水深和采样点采集的养殖扇贝()和贻贝()。不论双壳类物种如何,深水域中双壳类中的毒素浓度都较低。从同一海湾收集双壳类动物时,双壳类动物的毒素浓度差异不大。尽管双壳类动物受到STX的污染程度可能取决于各种环境和地理因素,但我们的发现对于制定采样方案以防止收获受污染的贝类很有用。

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