Faculty of Science, Biochemistry Dept., Ege University, 35100 Bornova-Izmir, Turkiye.
Biotechnol Prog. 2010 May-Jun;26(3):896-906. doi: 10.1002/btpr.372.
A highly stable and sensitive amperometric alcohol biosensor was developed by immobilizing alcohol oxidase (AOX) through Polyamidoamine (PAMAM) dendrimers on a cysteamine-modified gold electrode surface. Ethanol determination is based on the consumption of dissolved oxygen content due to the enzymatic reaction. The decrease in oxygen level was monitored at -0.7 V vs. Ag/AgCl and correlated with ethanol concentration. Optimization of variables affecting the system was performed. The optimized ethanol biosensor showed a wide linearity from 0.025 to 1.0 mM with 100 s response time and detection limit of (LOD) 0.016 mM. In the characterization studies, besides linearity some parameters such as operational and storage stability, reproducibility, repeatability, and substrate specificity were studied in detail. Stability studies showed a good preservation of the bioanalytical properties of the sensor, 67% of its initial sensitivity was kept after 1 month storage at 4 degrees C. The analytical characteristics of the system were also evaluated for alcohol determination in flow injection analysis (FIA) mode. Finally, proposed biosensor was applied for ethanol analysis in various alcoholic beverage as well as offline monitoring of alcohol production through the yeast cultivation.
一种高度稳定和灵敏的安培型酒精生物传感器是通过将醇氧化酶(AOX)固定在半胱胺修饰的金电极表面上的聚酰胺-胺(PAMAM)树枝状大分子来开发的。乙醇的测定是基于酶促反应导致溶解氧含量的消耗。在-0.7 V 相对于 Ag/AgCl 监测氧水平的下降,并与乙醇浓度相关。对影响系统的变量进行了优化。优化后的乙醇生物传感器在 100 s 响应时间内表现出从 0.025 到 1.0 mM 的宽线性范围和检测限(LOD)为 0.016 mM。在表征研究中,除了线性度之外,还详细研究了一些参数,如操作和存储稳定性、重现性、重复性和底物特异性。稳定性研究表明,传感器的生物分析特性得到了很好的保存,在 4°C 下储存 1 个月后,其初始灵敏度保持了 67%。还评估了该系统在流动注射分析(FIA)模式下用于酒精测定的分析特性。最后,将所提出的生物传感器应用于各种酒精饮料中的乙醇分析以及通过酵母培养进行离线监测酒精生产。