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Wiring of enzymes to electrodes by ultrathin conductive polyion underlayers: Enhanced catalytic response to hydrogen peroxide

机译:超薄导电聚离子底层将酶连接至电极:增强了对过氧化氢的催化反应

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Stable electroactive films were grown layer by layer on rough pyrolytic graphite electrodes featuring 4-nm underlayers of sulfonated polyaniline (SPAN) covered with a film containing myoglobin or horseradish peroxidase grown in alternating layers with poly(styrenesulfonate). The self-doped polyanionic SPAN layer, grown on a 2-nm polycation layer, was conductive between about 0.1 and -0.4 V vs SCE at pH 4.5. The enzyme films had the architecture PDDA/SPAN/(enzyme/PSS)(3), where PDDA is poly(diallyldimethylammonium) ion. Comparisons of voltammetric measurements of electroactive protein with quartz crystal microbalance measurements of total protein showed that 90% or more of the protein was coupled to the electrode when the SPAN underlayer was present, as opposed to similar to40% protein electroactivity when SPAN was absent. As a consequence of the highly efficient coupling between enzymes and electrode, the PDDA/SPAN/ (enzyme/PSS)(3) films exhibited a higher sensitivity for the electrochemical catalytic reduction of hydrogen peroxide. Amperometry at a rotating disk electrode at 0 V gave sensitivity for hydrogen peroxide up to 14 muA muM(-1) cm(-2) in the submicromolar concentration range and a detection limit of similar to3 nM. Results suggest the future utility of ultrathin layers of conductive self-doping polyions in improving sensitivity of enzyme biosensors. [References: 49]
机译:稳定的电活性膜逐层生长在粗糙的热解石墨电极上,该电极的特征是磺化聚苯胺(SPAN)的4-nm底层覆盖有一层含有肌红蛋白或辣根过氧化物酶的膜,该膜与聚苯乙烯磺酸盐交替生长。在2 nm的聚阳离子层上生长的自掺杂聚阴离子SPAN层在pH 4.5的条件下相对于SCE的导电率约为0.1至-0.4V。酶膜的结构为PDDA / SPAN /(酶/ PSS)(3),其中PDDA为聚(二烯丙基二甲基铵)离子。将电活性蛋白的伏安法测量值与总蛋白的石英晶体微量天平测量值进行比较,发现当存在SPAN底层时,有90%或更多的蛋白与电极偶联,而没有SPAN时,蛋白电活性接近40%。由于酶和电极之间的高效偶联,PDDA / SPAN /(酶/ PSS)(3)膜对电化学催化还原过氧化氢表现出更高的敏感性。在0 V旋转磁盘电极上的电流分析法在亚微摩尔浓度范围内对过氧化氢的敏感度高达14μAmuM(-1)cm(-2),检测极限类似于3 nM。结果表明,导电自掺杂聚离子超薄层在提高酶生物传感器灵敏度方面的未来应用。 [参考:49]

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