Shul'ga A A, Soldatkin A P, El'skaya A V, Dzyadevich S V, Patskovsky S V, Strikha V I
Institute of Molecular Biology and Genetics, Ukrainian Academy of Sciences, Kiev.
Biosens Bioelectron. 1994;9(3):217-23. doi: 10.1016/0956-5663(94)80124-x.
The characteristics of the developed conductometric biosensors for urea and glucose determination are described. Conductometric transducers based on thin-film interdigitated metal (Au, Cr, Cu, Ni) electrodes were studied, and enzymes urease and glucose oxidase were used for the selective membranes formation on the chips having gold electrodes. The influence of ionic strength and buffer capacity of the samples on the biosensors response in kinetic and steady-state modes of measurements was thoroughly tested. It was shown that the kinetic response of the sensors does not depend on the buffer capacity of the analyzed sample. In basic features the performance of the developed biosensors is rather close to that of respective enzyme field effect transistor, though the former are much superior when the technological complexity of the transducer itself is considered and taking into account that conductometric sensors require no reference electrode.
描述了所开发的用于测定尿素和葡萄糖的电导型生物传感器的特性。研究了基于薄膜叉指金属(金、铬、铜、镍)电极的电导换能器,并使用脲酶和葡萄糖氧化酶在具有金电极的芯片上形成选择性膜。全面测试了样品的离子强度和缓冲容量对生物传感器在动力学和稳态测量模式下响应的影响。结果表明,传感器的动力学响应不依赖于分析样品的缓冲容量。尽管在考虑换能器本身的技术复杂性以及电导型传感器不需要参比电极的情况下,前者具有很大优势,但所开发的生物传感器的基本性能与相应的酶场效应晶体管相当接近。