Rebriev A V, Ivashkevich S P, Starodub N F, Kercha S F, Masliuk A F
Palladin Institute of Biochemistry of NAS of Ukraine, Kyiv.
Ukr Biokhim Zh (1999). 2001 Jan-Feb;73(1):133-41.
A new electrochemical enzymatic sensor based on the ion selective field effect transistors (ISFETs) and photocurable membrane was developed for the determination of urea. For the immobilization of urease on the gate surface of the ISFET a simple method, involving the use of liquid photocurable compositions on the basis of vinylpirollidone, oligouretanemetacrylate and oligocarbonatemetacrylate, was applied. The linearange of the response of the developed electrochemical sensor lies in the range 0.05-20 mM. The latter corresponds to the claims of the medical practice. The overall time of the analysis is 5-10 min. The effects of the buffer concentration and its pH as well as temperature and presence of ammonia ions in the measuring medium on the amplitude of the sensor response were estimated. The duration of sensor work is as shortest 40 days. The proposed sensor on the basis of the ISFET is promising for the express analysis of the level urea in blood, while the developed method of membrane preparation with entrapped enzyme can be combined with the integral technology of producing of the biosensors semiconductor transducers.
开发了一种基于离子选择性场效应晶体管(ISFET)和光固化膜的新型电化学酶传感器,用于测定尿素。为了将脲酶固定在ISFET的栅极表面,采用了一种简单的方法,即使用基于乙烯基吡咯烷酮、低聚脲烷甲基丙烯酸酯和低聚碳酸酯甲基丙烯酸酯的液体光固化组合物。所开发的电化学传感器的线性响应范围为0.05-20 mM。后者与医学实践的要求相符。分析的总时间为5-10分钟。评估了缓冲液浓度及其pH值、温度以及测量介质中铵离子的存在对传感器响应幅度的影响。传感器的最短工作时长为40天。所提出的基于ISFET的传感器有望用于血液中尿素水平的快速分析,而所开发的包埋酶的膜制备方法可与生物传感器半导体换能器的整体生产技术相结合。