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A Field-Portable Toxicity Tester using Bacterial Bioluminescence

机译:使用细菌生物发光的现场便携式毒性测试仪

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This paper describes a simple, inexpensive and easily constructed toxicity biosensor that uses freeze-dried bioluminescent bacteria, photobacterium phosphoreum IFO 13896. To compensate for bacterial activity, we apply a differential photometer circuit to measure bioluminescence. Instead of a photomultiplier tube, dual photodiodes were used to reduce the cost of the sensor system. The concentrations of toxic compounds causing 50% light loss (50% effective concentrations, EC50) were determined immediately and 30 min after rehydration of the bacteria from a freeze-dried state. The EC50 values at dual mode operation with differential amplification are nearly constant for the temperature range between 10 and 25degC, whereas the EC50 values at single mode operation increase with temperature, resulting in low sensitivity. The performance of the portable biosensor as a tool for determining p-nitrophenol, mercury, cadmium, and lead toxicity is demonstrated.
机译:本文描述了一种简单,廉价且易于构造的毒性生物传感器,使用冻干的生物发光细菌,光杆菌IFO 13896。为了补偿细菌活性,我们施加差分光度计电路以测量生物发光。 代替光电倍增管,使用双光电二极管来降低传感器系统的成本。 毒性化合物的浓度立即测定导致50%光损失(50%有效浓度,EC50),并在从冷冻干燥状态的细菌再水溶液后30分钟测定。 具有差分放大的双模操作的EC50值对于10至25GC之间的温度范围几乎是恒定的,而单模操作时的EC50值随温度而增加,导致敏感性低。 将便携式生物传感器作为用于确定对硝基苯酚,汞,镉和铅毒性的工具的性能。

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