DEVELOPMENT OF ARGININE DEIMINASE BASED CONDUCTOMETRIC BIOSENSOR FOR ARGININE DETERMINATION

O. Soldatkin, I. Kucherenko, O. Y. Sayapina, D. Kucherenko, S. Marchenko, A. Soldatkin, S. Dzyadevych
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Abstract

For the first time, a conductometric enzyme biosensor was developed to determine arginine concentrations. The bioselective membrane of the biosensor was formed by immobilization of arginine deiminase on the surface of gold planar transducer using covalent crosslinking of glutaraldehyde with bovine serum albumin. An effect of the solution characteristics (ionic strength, buffer capacity) on the biosensor functioning was studied. The proposed monoenzyme biosensor was shown to have high sensitivity to arginine (minimum limit of detection - 5 μM) and good selectivity towards possible interferents. The linear range of determination was from 10 to 800 μM. The biosensor sensitivity to arginine is 72 μS /μM. The developed biosensor was demonstrated to be promising for the arginine analysis in real samples.
基于精氨酸脱亚胺酶的电导生物传感器的研制
首次开发了一种电导酶生物传感器来测定精氨酸浓度。采用戊二醛与牛血清白蛋白共价交联的方法,将精氨酸脱亚胺酶固定在金平面传感器表面,形成生物选择性膜。研究了溶液特性(离子强度、缓冲容量)对生物传感器功能的影响。结果表明,该单酶生物传感器对精氨酸具有较高的灵敏度(最小检测限- 5 μM),对可能存在的干扰具有良好的选择性。测定的线性范围为10 ~ 800 μM。该传感器对精氨酸的灵敏度为72 μS /μM。所研制的生物传感器在实际样品精氨酸分析中具有良好的应用前景。
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