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基于聚吡咯的双层硝酸盐安培生物传感器,具有集成的选择性聚邻苯二胺层,用于排除无机干扰。

Polypyrrole-based bilayer nitrate amperometric biosensor with an integrated permselective poly-ortho-phenylenediamine layer for exclusion of inorganic interferences.

机构信息

NanoScience and Sensor Technology Research Group, School of Applied Sciences and Engineering, Monash University, Gippsland Campus, Churchill 3842, Victoria, Australia.

出版信息

Biosens Bioelectron. 2011 Jul 15;26(11):4270-5. doi: 10.1016/j.bios.2011.04.002. Epub 2011 Apr 9.

Abstract

A bilayer amperometric nitrate biosensor with an integrated permselective layer has been developed for exclusion of inorganic anion and cation interferences. The inner PPy(polypyrrole)-NaR-NADH layer of the biosensor is formed by galvanostatic polymerization of pyrrole (Py) in presence of nitrate reductase (NaR) and nicotinamide adenine dinucleotide (NADH), followed by formation of the outer permselective poly-ortho-phenylenediamine (P-o-PDA) layer by potentiodynamic polymerization of ortho-phenylenediamine (o-PDA). The exclusion efficiency (E(eff)) of the outer layer in rejecting inorganic cation and anion interferences is evaluated by a new proposed relationship. 73-87% and 47-84% of anion and cation interferences, respectively, were efficiently rejected with the permselective layer. Further improvement in the exclusion efficiency for cations was accomplished by combining the use of the outer layer with the addition of 1mM EDTA into the measurement solution. The addition of EDTA improved the E(eff) achieved for cation rejection by 10-40% to give net E(eff) of 89-94%. The inclusion of the outer layer also aided the retention of NaR and NADH in the inner PPy-NaR-NADH layer and, hence, enabled improved amperometric detection of nitrate, achieving a detection limit of 0.20 μM and a linear concentration range of 10-500 μM with a 3.4%rsd (n=10).

摘要

一种具有集成选择层的双层安培硝酸盐生物传感器已被开发用于排除无机阴离子和阳离子干扰。生物传感器的内层 PPy(聚吡咯)-NaR-NADH 层是通过在硝酸盐还原酶 (NaR) 和烟酰胺腺嘌呤二核苷酸 (NADH) 的存在下进行吡咯 (Py) 的恒电流聚合形成的,然后通过邻苯二胺 (o-PDA) 的动电位聚合形成外层选择聚合物聚邻苯二胺 (P-o-PDA) 层。通过提出的新关系评估外层排除无机阳离子和阴离子干扰的排除效率 (E(eff))。通过选择层可以有效地排除 73-87%的阴离子和 47-84%的阳离子干扰。通过在外层中使用并在测量溶液中添加 1mM EDTA 进一步提高了阳离子的排除效率。EDTA 的添加将阳离子排斥的 E(eff) 提高了 10-40%,使净 E(eff) 达到 89-94%。包含外层还有助于将 NaR 和 NADH 保留在内层 PPy-NaR-NADH 层中,从而能够改善硝酸盐的安培检测,实现检测限为 0.20 μM,线性浓度范围为 10-500 μM,3.4%rsd(n=10)。

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