Laboratory of Biomolecular Electronics, Institute of Molecular Biology and Genetics of National Academy of Sciences of Ukraine, 150, Zabolotny Str., Kyiv 03143, Ukraine; Institute of High Technologies, Taras Shevchenko National University of Kyiv, 64, Volodymyrska Str., Kyiv 01003, Ukraine.
Talanta. 2013 Oct 15;115:200-7. doi: 10.1016/j.talanta.2013.04.065. Epub 2013 May 3.
The aim of this work was to develop an array of biosensors for simultaneous determination of four carbohydrates in solution. Several enzyme systems selective to lactose, maltose, sucrose and glucose were immobilised on the surface of four conductometric transducers and served as bio-recognition elements of the biosensor array. Direct enzyme analysis carried out by the developed biosensors was highly sensitive to the corresponding substrates. The analysis lasted 2 min. The dynamic range of substrate determination extended from 0.001 mM to 1.0-3.0mM, and strongly depended on the enzyme system used. An effect of the solution pH, ionic strength and buffer capacity on the biosensors responses was investigated; the conditions of simultaneous operation of all biosensors were optimised. The data on cross-impact of the substrates of all biosensors were obtained; the biosensor selectivity towards possible interfering carbohydrates was tested. The developed biosensor array showed good signal reproducibility and storage stability. The biosensor array is suited for simultaneous, quick, simple, and selective determination of maltose, lactose, sucrose and glucose.
本工作旨在开发用于同时测定溶液中四种碳水化合物的生物传感器阵列。几种对乳糖、麦芽糖、蔗糖和葡萄糖具有选择性的酶系统被固定在四个电导传感器的表面上,作为生物传感器阵列的生物识别元件。通过所开发的生物传感器进行的直接酶分析对相应的底物具有高度的敏感性。分析持续 2 分钟。底物测定的动态范围从 0.001mM 扩展到 1.0-3.0mM,并且强烈依赖于所用的酶系统。研究了溶液 pH 值、离子强度和缓冲能力对生物传感器响应的影响;优化了所有生物传感器同时运行的条件。获得了所有生物传感器底物的交叉影响数据;测试了生物传感器对可能干扰碳水化合物的选择性。所开发的生物传感器阵列显示出良好的信号重现性和储存稳定性。该生物传感器阵列适用于同时、快速、简单和选择性地测定麦芽糖、乳糖、蔗糖和葡萄糖。