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Adsorption of Glucose Oxidase onto Single-Walled Carbon Nanotubes and Its Application in Layer-By-Layer Biosensors

机译:葡萄糖氧化酶在单壁碳纳米管上的吸附及其在层状生物传感器中的应用

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In this study, we describe the use of a sodium cholate suspension-dialysis method to adsorb the redox enzyme glucose oxidase (GOX) onto single-walled carbon nanotubes (SWNT). By this method, solutions of dispersed and debundled SWNTs were prepared that remained stable for 30 days and which retained 75percent of the native enzymatic activity. We also demonstrate that GOX-SWNT conjugates can be assembled into amperometric biosensors with a poly[(vinylpyridine)Os(bipyridyl)_(2)Cl~(2+/3+)] redox polymer (PVP-Os) through a layer-by-layer (LBL) self-assembly process. Incorporation of SWNT-enzyme conjugates into the LBL films resulted in current densities as high as 440 (mu)A/cm~(2), which were a 2-fold increase over the response of films without SWNTs. We also demonstrate that the adsorption pH of the redox polymer solution and the dispersion quality of SWNTs were important parameters in controlling the electrochemical and enzymatic properties of the LBL films.
机译:在这项研究中,我们描述了使用胆酸钠悬浮液透析方法将氧化还原酶葡萄糖氧化酶(GOX)吸附到单壁碳纳米管(SWNT)上。通过这种方法,制备了分散的和去捆绑的SWNTs的溶液,这些溶液保持稳定30天,并保留了75%的天然酶活性。我们还证明了GOX-SWNT共轭物可以通过一层聚[[乙烯基吡啶] Os(联吡啶基)_(2)Cl〜(2 + / 3 +)]氧化还原聚合物(PVP-Os)组装成安培生物传感器。按层(LBL)自组装过程。将SWNT-酶结合物掺入到LBL膜中导致电流密度高达440μA/ cm 2(2),这比没有SWNT的膜的响应增加了2倍。我们还证明,氧化还原聚合物溶液的吸附pH值和SWNTs的分散质量是控制LBL膜的电化学和酶学性质的重要参数。

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