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Determination of paralytic shellfish toxins using potentiometric electronic tongue

机译:电位电子舌法测定麻痹性贝类毒素

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The present work deals with the application of an electronic tongue based on potentiometric chemical sensors to the detection of paralytic shellfish toxins (PSTs) in bivalve extracts. PSTs are naturally occurring toxic compounds produced by some phytoplankton species that may accumulate in bivalves during algal blooms. Bivalves for human consumption are therefore monitored for PSTs. Electronic tongue comprised six miniaturized sensors with solid inner contact and plasticized polyvinylchloride membranes. Calibration models were calculated by PLS regression using measurements in sixteen model mixed solutions containing four PSTs commonly detected in bivalves harvested in the Portuguese coast. Transfer of the calibration models to sample matrix was done by joint-PLS regression using measurements in five mussel extracts spiked with PST standards. Quantification of PSTs in extracts of naturally contaminated mussel using electronic tongue and updated calibration model was in agreement with measurements by the reference chromatographic method.
机译:本工作涉及基于电位化学传感器的电子舌在双壳类提取物中检测麻痹性贝类毒素(PST)的应用。 PST是某些浮游植物产生的天然有毒化合物,可能在藻华期间在双壳类动物体内积累。因此,对用于人类食用的双壳类进行了PST监测。电子舌包括六个带有内部内部接触的微型传感器和可塑化的聚氯乙烯膜。通过使用包含在葡萄牙海岸收获的双壳类动物中通常检测到的四种PST的十六种模型混合溶液中的测量值,通过PLS回归计算校准模型。通过联合PLS回归,使用加有PST标准品的5种贻贝提取物进行测量,将校准模型转移至样品基质。使用电子舌和更新的校准模型对天然污染贻贝提取物中的PST进行定量,与通过参考色谱法进行的测定相吻合。

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