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Mass Transfer in Amperometric Biosensors Based on Nanocomposite Thin Films of Redox Polymers and Oxidoreductases

机译:基于氧化还原聚合物和氧化还原酶纳米复合薄膜的安培生物传感器中的传质

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Mass transfer in nanocomposite hydrogel thin films consisting of alternating layers of an organometallic redox polymer (RP) and oxidoreductase enzymes was investigated. Multilayer nanostructures were fabricated on gold surfaces by the deposition of an anionic self-assembled monolayer of 11-mercaptoundecanoic acid, followed by the electrostatic binding of a cationic redox polymer, poly[vinylpyridine Os(bis-bipyridine)2Cl- co-allylamine], and an anionic oxidoreductase. Surface plasmon resonance spectroscopy, Fourier transform infrared external reflection spectroscopy (FTIR-ERS), ellipsometry and electrochemistry were employed to characterize the assembly of these nanocomposite films. Simultaneous SPR/electrochemistry enabled real time observation of the assembly of sensing components, changes in film structure with electrode potential, and the immediate, in situ electrochemical verification of substrate-dependent current upon the addition of enzyme to the multilayer structure. SPR and FTIR-ERS studies also showed no desorption of polymer or enzyme from the nanocomposite structure when stored in aqueous environment occurred over the period of three weeks, suggesting that decreasing in substrate sensitivity were due to loss of enzymatic activity rather than loss of film compounds from the nanostructure.
机译:研究了由有机金属氧化还原聚合物(RP)和氧化还原酶的交替层组成的纳米复合水凝胶薄膜中的传质。通过沉积11-巯基癸酸的阴离子自组装单层膜,然后静电结合阳离子氧化还原聚合物,聚[乙烯基吡啶Os(双-联吡啶)2Cl-共烯丙基胺],在金表面制备多层纳米结构。和阴离子氧化还原酶。使用表面等离子体共振光谱,傅立叶变换红外外反射光谱(FTIR-ERS),椭圆偏振和电化学来表征这些纳米复合膜的组装。同时进行SPR /电化学分析,可以实时观察传感组件的组装,膜结构随电极电位的变化,以及在向多层结构中添加酶后立即进行原位电化学检测底物依赖性电流。 SPR和FTIR-ERS研究还显示,在水性环境中储存三周后,没有聚合物或酶从纳米复合结构中解吸,这表明底物敏感性降低是由于酶活性的损失而不是膜化合物的损失从纳米结构。

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