Determination of Na channel blockers in paralytic shellfish toxins and pufferfish toxins with a tissue biosensor.

Journal of natural toxins Pub Date : 1998-06-01
B S Cheun, S Takagi, T Hayashi, Y Nagashima, E Watanabe
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Abstract

The biosensor consisted of a sodium electrode and covered with the frog bladder membrane within a flow cell was tested for the estimation of tetrodotoxin (TTX) and saxitoxin (STX). This sensor was applied to detect very low amounts of the Na+ channel blockers, STX and TTX, in different shellfishes and swellfishes. A good agreement was obtained between TTX activities determined by mouse assay and amounts of Na+ channel blockers estimated by frog membrane sensor. The lowest level of TTX (fg) that can be determined by frog membrane sensor does not cause human poisoning. The channel blockers in short-necked clam, which was assumed to be STX, were monitored by this sensor continuously every week for one year. It was discovered that the STX content increased from July until September and then decreased from October until March. The biosensor proposed here may be used for the estimation of STX and TTX conventionally in the future.

组织生物传感器测定麻痹性贝类毒素和河豚毒素中钠通道阻滞剂的含量。
该生物传感器由钠电极组成,覆盖在蛙膀胱膜上,置于流动池内,用于检测河豚毒素(TTX)和蛤蚌毒素(STX)。该传感器用于检测不同贝类和水井鱼中极少量的Na+通道阻滞剂STX和TTX。小鼠测定的TTX活性与蛙膜传感器测定的Na+通道阻滞剂的量具有较好的一致性。蛙膜传感器测得的TTX最低水平(fg)不会引起人体中毒。用该传感器连续监测短颈蚌体内通道阻滞剂STX,每周监测1年。发现STX含量在7 - 9月呈上升趋势,10 - 3月呈下降趋势。本文提出的生物传感器可用于常规STX和TTX的估计。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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