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Development of a Fully Automated Flow Injection Analyzer Implementing Bioluminescent Biosensors for Water Toxicity Assessment

机译:全自动流动注射分析仪的开发,该分析仪具有用于水毒性评估的生物发光生物传感器

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摘要

This paper describes the development of an automated Flow Injection analyzer for water toxicity assessment. The analyzer is validated by assessing the toxicity of heavy metal (Pb2+, Hg2+ and Cu2+) solutions. One hundred μL of a Vibrio fischeri suspension are injected in a carrier solution containing different heavy metal concentrations. Biosensor cells are mixed with the toxic carrier solution in the mixing coil on the way to the detector. Response registered is % inhibition of biosensor bioluminescence due to heavy metal toxicity in comparison to that resulting by injecting the Vibrio fischeri suspension in deionised water. Carrier solutions of mercury showed higher toxicity than the other heavy metals, whereas all metals show concentration related levels of toxicity. The biosensor’s response to carrier solutions of different pHs was tested. Vibrio fischeri’s bioluminescence is promoted in the pH 5–10 range. Experiments indicate that the whole cell biosensor, as applied in the automated fluidic system, responds to various toxic solutions.
机译:本文介绍了用于水毒性评估的自动流动注射分析仪的开发。该分析仪通过评估重金属(Pb2 +,Hg2 +和Cu2 +)溶液的毒性来验证。将一百微升费氏弧菌悬浮液注入含有不同重金属浓度的载体溶液中。在到达检测器的过程中,将生物传感器细胞与有毒载体溶液在混合盘管中混合。与注入去离子水中的费氏弧菌悬浮液相比,重金属毒性导致的生物传感器生物发光抑制百分比提高。汞的载体溶液显示出比其他重金属更高的毒性,而所有金属均显示出与浓度有关的毒性水平。测试了生物传感器对不同pH的载体溶液的响应。 pH 5-10范围内会促进费氏弧菌的生物发光。实验表明,应用于自动流体系统的全细胞生物传感器对各种有毒溶液都有反应。

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