首页> 外文期刊>Journal of AOAC International >Optimization of Hydrophilic Interaction Liquid Chromatography/Mass Spectrometry and Development of Solid-Phase Extraction for the Determination of Paralytic Shellfish Poisoning Toxins
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Optimization of Hydrophilic Interaction Liquid Chromatography/Mass Spectrometry and Development of Solid-Phase Extraction for the Determination of Paralytic Shellfish Poisoning Toxins

机译:亲水相互作用色谱/质谱的优化和固相萃取技术开发用于测定麻痹性贝类中毒毒素

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摘要

The combination of hydrophilic interaction liquid chromatography (HILIC) and liquid chromatography/mass spectrometry (LC/MS) for the determination of paralytic shellfish poisoning (PSP) toxins has been proposed for use in routine monitoring of shellfish. In this study, methods for the detection of multiple PSP toxins [saxitoxin (STX), neosaxitoxin (NEO), decarbamoyl saxitoxin (dcSTX), decarbamoyl neosaxitoxin (dcNEO), gonyautoxins 1-5 (GTX1, GTX2, GTX3, GTX4, GTX5), decarbamoyl gonyautoxins (dcGTX2 and cGTX3), and the N-sulfocarbamoyl C toxins (C1 and C2)] were optimized using single (MS) and triple quadrupole (MS/MS) instruments. Chromatographic separation of the toxins was achieved by using a TSK-gel Amide-80 analytical column, although superior chromatography was observed through application of a ZIC-HILIC column. Preparative procedures used to clean up shellfish extracts and concentrate PSP toxins prior to analysis were investigated. The capacity of computationally designed polymeric (CDP) materials and HILIC solid-phase extraction (SPE) cartridges to retain highly polar PSP toxins was explored. Three CDP materials and 2 HILIC cartridges were assessed for the extraction of PSP toxins from aqueous solution. Screening of the CDPs showed that all tested polymers adsorbed PSP toxins. A variety of elution procedures were examined, with dilute 0.01% acetic acid providing optimum recovery from a CDP based on 2-(trifluoromethyl)acrylic acid as the monomer. ZIC-HILIC SPE cartridges were superior to the PolyLC equivalent, with recoveries ranging from 70 to 112% (ZIC-HILIC) and 0 to 90% (PolyLC) depending on the PSP toxin. It is proposed that optimized SPE and HILIC-MS methods can be applied for the quantitative determination of PSP toxins in shellfish.
机译:已提出将亲水相互作用液相色谱法(HILIC)和液相色谱/质谱法(LC / MS)结合起来用于确定麻痹性贝类中毒(PSP)毒素的方法,可用于贝类的常规监测。在这项研究中,用于检测多种PSP毒素的方法[萨克毒素(STX),新萨克毒素(NEO),十氨基甲酰毒素(dcSTX),十氨基甲酰新毒素(dcNEO),淋巴毒素1-5(GTX1,GTX2,GTX3,GTX4,GTX5) ,去氨甲酰基淋菌毒素(dcGTX2和cGTX3)和N-磺基氨基甲酰基C毒素(C1和C2)]使用单(MS)和三重四极杆(MS / MS)仪器进行了优化。通过使用TSK-gel Amide-80分析柱可实现毒素的色谱分离,尽管通过使用ZIC-HILIC柱也可观察到出色的色谱分离。分析了用于清理贝类提取物并在分析之前浓缩PSP毒素的制备程序。探索了计算设计的聚合物(CDP)材料和HILIC固相萃取(SPE)药筒保留高极性PSP毒素的能力。评估了三种CDP材料和2个HILIC滤芯,用于从水溶液中提取PSP毒素。 CDP的筛选显示所有测试的聚合物均吸附了PSP毒素。检查了各种洗脱程序,用0.01%的稀乙酸从以2-(三氟甲基)丙烯酸为单体的CDP中提供最佳回收率。 ZIC-HILIC SPE滤芯优于PolyLC同类产品,根据PSP毒素的不同,其回收率范围为70%至112%(ZIC-HILIC)和0%至90%(PolyLC)。建议将优化的SPE和HILIC-MS方法应用于贝类中PSP毒素的定量测定。

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