Vidal J C, Garcia-Ruiz E, Espuelas J, Aramendia T, Castillo J R
Analytical Chemistry Department, Faculty of Science, University of Zaragoza, Plaza San Francisco s/n, 50009 Zaragoza, Spain.
Anal Bioanal Chem. 2003 Sep;377(2):273-80. doi: 10.1007/s00216-003-2120-x. Epub 2003 Aug 16.
Cholesterol amperometric biosensors constructed with enzymes entrapped in electropolymerized layers of polypyrrole and poly-naphthalene derivative polymers are compared. The biosensors are based on entrapment of cholesterol oxidase and/or cholesterol esterase in monolayer or multilayer films electrochemically synthesised from pyrrole, 1,8-diaminonaphthalene (1,8-DAN), and 1,5-diaminonaphthalene (1,5-DAN) monomers. Seven configurations were assayed and compared, and different analytical properties were obtained depending on the kind of polymer and the arrangement of the layers. The selectivity properties were evaluated for the different monolayer and bilayer configurations proposed as a function of the film permeation factor. All the steps involved in the preparation of the biosensors and determination of cholesterol were carried out in a flow system. Sensitivity and selectivity depend greatly on hydrophobicity, permeability, compactness, thickness, and the kind of the polymer used. In some cases a protective outer layer of non-conducting poly( o-phenylenediamine) polymer improves the analytical characteristics of the biosensor. A comparative study was made of the analytical performance of each of the configurations developed. The biosensors were also applied to the flow-injection determination of cholesterol in a synthetic serum.
对用包埋在聚吡咯和聚萘衍生物聚合物电聚合层中的酶构建的胆固醇安培生物传感器进行了比较。这些生物传感器基于将胆固醇氧化酶和/或胆固醇酯酶包埋在由吡咯、1,8-二氨基萘(1,8-DAN)和1,5-二氨基萘(1,5-DAN)单体电化学合成的单层或多层膜中。对七种配置进行了测定和比较,根据聚合物的种类和层的排列获得了不同的分析特性。根据膜渗透因子,对所提出的不同单层和双层配置的选择性特性进行了评估。生物传感器制备和胆固醇测定所涉及的所有步骤均在流动系统中进行。灵敏度和选择性在很大程度上取决于疏水性、渗透性、致密性、厚度以及所用聚合物的种类。在某些情况下,非导电聚(邻苯二胺)聚合物的保护外层可改善生物传感器的分析特性。对所开发的每种配置的分析性能进行了比较研究。这些生物传感器还应用于合成血清中胆固醇的流动注射测定。