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Amperometric Biosensor Based on Glucose Dehydrogenase and Plasma-polymerized Thin Films

机译:基于葡萄糖脱氢酶和等离子体聚合薄膜的安培生物传感器

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A novel design is described for an amperometric biosensor based on NAD(P)-dependent glucose dehydrogenase (GDH) combined with a plasma-polymerized thin film (PPF). The GDH is sandwiched between several nanometer thick acetonitrile PPFs on a sputtered gold electrode (PPF/GDH/PPF/Au). The lower PPF layer plays the role as an interface between enzyme and electrode because it is extremely thin, adheres well to the substrate (electrode), has a flat surface and a highly-crosslinked network structure, and is hydrophilic in nature. The upper PPF layer (overcoating) was directly deposited on immobilized GDH. The optimized amperometric biosensor characteristics covered 2.5 - 26 mM glucose concentration at +0.6 V of applied potential; the least-squares slope was 320 nA mM-1 cm-2 and the correlation coefficient was 0.990. Unlike conventional wet-chemical processes that are incompatible with mass production techniques, this dry-chemistry procedure has great potential for enabling high-throughput production of bioelectronic devices.
机译:描述了一种新颖的设计,用于基于NAD(P)依赖性葡萄糖脱氢酶(GDH)结合等离子体聚合薄膜(PPF)的安培生物传感器。 GDH夹在溅射金电极(PPF / GDH / PPF / Au)上几纳米厚的乙腈PPF之间。下部PPF层起着极薄的作用,可以很好地粘附于底物(电极),具有平坦的表面和高度交联的网络结构,并且具有亲水性,因此起着酶与电极之间的界面的作用。 PPF上层(外涂层)直接沉积在固定的GDH上。优化的安培生物传感器特性涵盖了+0.6 V施加电势时2.5-26 mM的葡萄糖浓度;最小二乘斜率是320 nA mM-1 cm-2,相关系数是0.990。与常规的湿化学工艺不兼​​容于批量生产技术,这种干化学程序具有巨大的潜力,可以实现高通量的生物电子设备生产。

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