Performance of urea-sensitive enzyme field effect transistors: influence of the storage conditions.

S Poyard, D Gorchkov, A Jdanova, N Jaffrezic-Renault, C Martelet, A Soldatkin, A El'Skaya
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Abstract

Urea-sensitive enzyme field effect transistors (ENFETs) were prepared by cross-linking urease with bovine serum albumin in saturated glutaraldehyde vapor on the sensitive surface of a pH-FET. The linear part of the biosensor dynamic range is between 5 x 10(-5) and 10(-3) M of urea. The influence of pH on the sensor response, stability and reproducibility of the urea sensor were examined. The addition of EDTA, glycerol, sodium azide and dithiothreitol in the storage buffer solution was studied. In these specific storage conditions, an increase of sensor sensitivity and stability was observed, which means that the enzyme is inhibited during the immobilisation procedure and can be partially restored. Furthermore such reagents do not affect the operational characteristics of the sensor when working in serum.

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脲敏感酶场效应晶体管的性能:贮存条件的影响。
利用脲酶与牛血清白蛋白在饱和戊二醛蒸汽中交联,在pH-FET敏感表面制备了脲酶场效应晶体管(enfet)。生物传感器动态范围的线性部分在5 × 10(-5)和10(-3)M尿素之间。考察了pH值对传感器响应、稳定性和再现性的影响。研究了EDTA、甘油、叠氮化钠和二硫代苏糖醇在储存缓冲液中的添加。在这些特定的储存条件下,观察到传感器灵敏度和稳定性的增加,这意味着酶在固定过程中被抑制,可以部分恢复。此外,这些试剂在血清中工作时不影响传感器的操作特性。
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