Sen S, Gülce A, Gülce H
Department of Chemistry, Süleyman Demirel University, 32260 Isparta, Turkey.
Biosens Bioelectron. 2004 May 15;19(10):1261-8. doi: 10.1016/j.bios.2003.11.011.
A simple method of enzyme immobilization was investigated, which is useful for development of enzyme electrodes based on polyvinylferrocenium perchlorate coated Pt electrode surface. Enzymes were incorporated into the polymer matrix via ion exchange process by immersing polyvinylferrocenium perchlorate coated Pt electrode in enzyme solution for several times. Choline and acetylcholine enzyme electrodes were developed by co-immobilizing choline oxidase and acetylcholinesterase in polyvinylferrocenium perchlorate matrix coated on a Pt electrode surface. The amperometric responses of the enzyme electrodes were measured at +0.70 V versus SCE, which was due to the electrooxidation of enzymatically produced H2O2. The effects of the thickness of the polymeric film, pH, temperature, substrate and enzyme concentrations on the response of the enzyme electrode were investigated. The optimum pH was found to be pH 7.4 at 25 degrees C. The steady-state current of these enzyme electrodes were reproducible within +/-5.0% of the relative error. Response time was found to be 30-50s and upper limit of the linear working portions was found to be 1.2mM choline and acetylcholine concentrations in which produced detectable currents were 1.0 x 10(-6)M substrate concentrations. The apparent Michaelis-Menten constant and the activation energy of this immobilized enzyme system were found to be 1.74 mM acetylcholine and 14.9 kJ mol(-1), respectively. The effects of interferents and stability of the enzyme electrodes were also investigated.
研究了一种简单的酶固定化方法,该方法对于基于高氯酸聚乙烯二茂铁包覆的铂电极表面开发酶电极很有用。通过将高氯酸聚乙烯二茂铁包覆的铂电极多次浸入酶溶液中,通过离子交换过程将酶掺入聚合物基质中。通过将胆碱氧化酶和乙酰胆碱酯酶共固定在包覆于铂电极表面的高氯酸聚乙烯二茂铁基质中,开发了胆碱和乙酰胆碱酶电极。酶电极的安培响应是在相对于饱和甘汞电极(SCE)为 +0.70 V 时测量的,这是由于酶促产生的过氧化氢的电氧化作用。研究了聚合物膜厚度、pH、温度、底物和酶浓度对酶电极响应的影响。发现在 25℃ 时最佳 pH 为 7.4。这些酶电极的稳态电流在相对误差的 +/-5.0% 范围内可重现。响应时间为 30 - 50 秒,线性工作部分的上限发现在胆碱和乙酰胆碱浓度为 1.2 mM 时,其中产生可检测电流的底物浓度为 1.0×10⁻⁶ M。该固定化酶系统的表观米氏常数和活化能分别为 1.74 mM 乙酰胆碱和 14.9 kJ mol⁻¹。还研究了干扰物的影响和酶电极的稳定性。