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A novel enzyme biosensor specific for formaldehyde based on pH-sensitive field effect transistors

机译:基于pH敏感场效应晶体管的甲醛特异的一种新型酶发变菌蛋白

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摘要

An enzyme biosensor specific for formaldehyde has been developed using pH-sensitive field effect transistors (FET) as a transducer and alcohol oxidase (AOX) from Hansenula polymorpha as a sensitive element. The steady-state response time of the developed biosensor was 10-60 s. The linear dynamic range (in semi-logarithmic scale) of the sensor output signal corresponded to 10-300 mmol dm(-3) formaldehyde concentration. The operational stability of the biosensor was not less than 7 h and the relative standard deviation approximately 1-3%. When stored at +4 degrees C, the response was stable for more than 30 days. The biosensor demonstrated high specificity to formaldehyde with no potentiometric response to primary alcohols. The influence of buffer concentration and enzyme concentration in the biomembrane on the sensor signal was investigated. The specific biosensor could also be successfully used for highly selective, quantitative estimation of mercury ion in an aqueous solution.
机译:使用pH敏感场效应晶体管(FET)作为敏感元素,作为敏感元素的换能器和醇氧化酶(AOX),开发了对甲醛特异的酶发传感器。 发达的生物传感器的稳态响应时间为10-60秒。 传感器输出信号的线性动态范围(以半对数刻度)对应于10-300mmol DM(-3)甲醛浓度。 生物传感器的操作稳定性不小于7小时,相对标准偏差约为1-3%。 当储存在+4摄氏度下时,响应稳定超过30天。 生物传感器对甲醛表现出高特异性,对伯醇没有电位响应。 研究了缓冲液浓度和酶浓度在传感器信号上的影响。 具体的生物传感器也可以成功地用于水溶液中的汞离子的高选择性定量估计。

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