Selampinar F, Akbulut U, Ozden M Y, Toppare L
Department of Chemistry, Middle East Technical University, Ankara, Turkey.
Biomaterials. 1997 Sep;18(17):1163-8. doi: 10.1016/s0142-9612(97)00056-2.
This paper reports a novel approach in the electrode immobilization of an enzyme, invertase, by electrochemical polymerization of pyrrole in the presence of enzyme. The polypyrrole/invertase and polyamide/polypyrrole/invertase electrodes were constructed by the entrapment of enzyme in conducting matrices during electrochemical polymerization of pyrrole. This study involves the preparation and characterization of polypyrrole/invertase and polyamide/polypyrrole/invertase electrodes under conditions compatible with the enzyme. It demonstrates the effects of pH and temperature on the properties of enzyme electrode. Enzyme leakage tests were carried out during reuse number studies. The preparation of enzyme electrodes was done in two different electrolyte/solvent systems. The enzyme serves as a sucrose electrode and retains its activity for several months.
本文报道了一种在酶存在的情况下通过吡咯的电化学聚合来固定化酶(转化酶)的新方法。聚吡咯/转化酶电极和聚酰胺/聚吡咯/转化酶电极是在吡咯的电化学聚合过程中将酶包埋在导电基质中构建而成的。本研究涉及在与酶兼容的条件下制备和表征聚吡咯/转化酶电极和聚酰胺/聚吡咯/转化酶电极。它展示了pH值和温度对酶电极性能的影响。在重复使用次数研究期间进行了酶泄漏测试。酶电极的制备是在两种不同的电解质/溶剂体系中完成的。该酶用作蔗糖电极并能保持其活性数月。