Institut UTINAM, UMR CNRS 6213, Equipe Matériaux et Surfaces Structurés, Université de Franche-Comté, 16 route de Gray, 25030 Besançon Cedex, France.
Biosens Bioelectron. 2011 Jun 15;26(10):4139-45. doi: 10.1016/j.bios.2011.04.009. Epub 2011 Apr 13.
A potentiometric biosensor based on urease was developed for the quantitative determination of urea concentration in aqueous solutions for biomedical applications. The urease was either physisorbed onto an electrodeposited polyaniline film (PANI), or immobilized on a layer-by-layer film (LbL) assembled over the PANI film, that was obtained by the alternate deposition of charged polysaccharides (carboxymethylpullulan (CMP) and chitosan (CHI)). In the latter case, the urease (Urs) enzyme was either physically adsorbed or covalently grafted to the LbL film using carbodiimide coupling reaction. Potentiometric responses of the enzymatic biosensors were measured as a function of the urea concentration in aqueous solutions (from 10(-6) to 10(-1) mol L(-1) urea). Very high sensitivity and short response time were observed for the present biosensor. Moreover, a stability study showed a higher stability over time for the potentiometric response of the sensor with the enzyme-grafted LbL film, testifying for the protective nature of the polysaccharide coating and the interest of covalent grafting.
基于脲酶的电位生物传感器用于定量测定水溶液中的尿素浓度,用于生物医学应用。脲酶要么物理吸附在电沉积的聚苯胺膜(PANI)上,要么固定在通过交替沉积带电多糖(羧甲基普鲁兰(CMP)和壳聚糖(CHI))在 PANI 膜上组装的层层膜(LbL)上。在后一种情况下,脲酶(Urs)酶要么通过碳二亚胺偶联反应物理吸附,要么共价接枝到 LbL 膜上。作为水溶液中尿素浓度的函数,测量了酶生物传感器的电位响应(从 10(-6)到 10(-1)mol L(-1)尿素)。本生物传感器表现出非常高的灵敏度和短的响应时间。此外,稳定性研究表明,具有酶接枝 LbL 膜的传感器的电位响应随时间具有更高的稳定性,证明了多糖涂层的保护性质和共价接枝的意义。