Canbay Erhan, Akyilmaz Erol
Department of Biochemistry, Faculty of Science, Ege University, 35100 Bornova, Izmir, Turkey.
Anal Biochem. 2014 Jan 1;444:8-15. doi: 10.1016/j.ab.2013.09.019. Epub 2013 Oct 1.
In this work, a multiwalled carbon nanotube (MWCNT)-Nafion-cysteamine (CA) modified tyrosinase biosensor brings a new and original perspective to biosensor technology intended for the development of dopamine determination. Dopamine measurements were done at 0.2V with the amperometric method by the developed biosensor system. In addition, in this study dopamine determination was carried out by using the differential pulse voltammetry method between potentials of 0.4 and -0.15 V. In the optimization studies of the biosensor, some parameters such as optimal pH, optimal temperature, optimal enzyme amount, and effect of MWCNT concentration were investigated. Afterward, in the characterization studies, some parameters such as linearity and reproducibility were determined. In the reproducibility experiment, an average value of 1.026 μM, a standard deviation of ±0.03975, and a coefficient of variation of 3.8% were determined for a 1-μM dopamine concentration (n=15). Determination of dopamine was carried out in drug samples by the developed biosensor.
在这项工作中,一种多壁碳纳米管(MWCNT)- 全氟磺酸 - 半胱胺(CA)修饰的酪氨酸酶生物传感器为旨在开发多巴胺测定方法的生物传感器技术带来了全新的视角。通过所开发的生物传感器系统,采用安培法在0.2V下进行多巴胺测量。此外,在本研究中,通过差分脉冲伏安法在0.4V至 -0.15V的电位之间进行多巴胺测定。在生物传感器的优化研究中,研究了一些参数,如最佳pH值、最佳温度、最佳酶量以及MWCNT浓度的影响。随后,在表征研究中,确定了一些参数,如线性和重现性。在重现性实验中,对于1μM的多巴胺浓度(n = 15),测定的平均值为1.026μM,标准偏差为±0.03975,变异系数为3.8%。通过所开发的生物传感器对药物样品中的多巴胺进行测定。