Institute of Biomaterials, College of Sciences, South China Agricultural University, Guangzhou 510642, Guangdong Province, China.
Anal Chim Acta. 2012 Apr 13;722:100-6. doi: 10.1016/j.aca.2012.01.059. Epub 2012 Feb 10.
An electrochemical immunosensor, basing on a dual amplification strategy by employing a biocompatible Fe(3)O(4)/polyaniline/Nafion (Fe(3)O(4)/PANI/Nafion) layer as sensor platform and multi-enzyme-antibody functionalized highly-carbonized spheres (multi-HRP-HCS-Ab(2)) as label, was constructed for sensitive detection of benzo[a]pyrene (BaP). The stable film, Fe(3)O(4)/PANI/Nafion, can not only immobilize biomolecules, but also catalyze the reduction of hydrogen peroxide, indicating an accelerated electron transfer pathway of the platform. The experimental conditions, including the concentration of Nafion, concentration of Fe(3)O(4)/polyaniline (Fe(3)O(4)/PANI), pH of the detection solution and concentrations of biomolecules, were studied in detail. Basing on a competitive immunoassay, the current change was proportional to the logarithm of BaP concentration in the range of 8 pM and 2 nM with the detection limit of 4 pM. The proposed immunosensor exhibited acceptable reproducibility and stability. This new type of dual amplification strategy may provide potential applications for the detection of environmental pollutants.
一种基于双信号放大策略的电化学免疫传感器,以生物相容性的 Fe(3)O(4)/聚苯胺/纳滤膜(Fe(3)O(4)/PANI/Nafion)作为传感器平台,多酶-抗体功能化的高度碳化球(multi-HRP-HCS-Ab(2))作为标记物,用于灵敏检测苯并[a]芘(BaP)。稳定的薄膜 Fe(3)O(4)/PANI/Nafion 不仅可以固定生物分子,还可以催化过氧化氢的还原,表明该平台具有加速的电子传递途径。详细研究了实验条件,包括 Nafion 的浓度、Fe(3)O(4)/聚苯胺(Fe(3)O(4)/PANI)的浓度、检测溶液的 pH 值以及生物分子的浓度。基于竞争免疫分析,电流变化与 BaP 浓度的对数在 8 pM 和 2 nM 范围内呈正比,检测限为 4 pM。所提出的免疫传感器表现出可接受的重现性和稳定性。这种新型双信号放大策略可能为环境污染物的检测提供潜在的应用。