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首页> 外文期刊>Journal of Electroanalytical Chemistry: An International Journal Devoted to All Aspects of Electrode Kinetics, Interfacial Structure, Properties of Electrolytes, Colloid and Biological Electrochemistry >Amperometric glucose sensing with polyaniline/poly(acrylic acid) composite film bearing glucose oxidase and catalase based on competitive oxygen consumption reactions
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Amperometric glucose sensing with polyaniline/poly(acrylic acid) composite film bearing glucose oxidase and catalase based on competitive oxygen consumption reactions

机译:含有聚苯胺/聚(丙烯酸)复合膜的安培葡萄糖感应轴承葡萄糖氧化酶和过氧化氢酶的基于竞争性氧气消费反应

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摘要

For the purpose of avoiding interference with glucose biosensing caused by coexisting easily oxidizable compounds, the sensing was attempted with an enzyme electrode (PANI/PAA-GOx/Cat) that was fabricated by co-immobilizing glucose oxidase (GOx) and catalase (Cat) on polyaniline/poly(acrylic acid) (PANI/PAA) composite films. The glucose sensing was carried out by monitoring the decrease in the O-2 reduction current resulted from competitive consumption of dissolved O-2 caused by electrochemical O-2 reduction and enzymatic glucose oxidation. It was found that the immobilized Cat reproduced O-2 from H2O2 accompanying GOx-catalytic glucose oxidation. As a result, the enzyme electrode gave a wide linear range (up to 1.6 +/- 0.0 mM glucose) and a high sensitivity (49.3 +/- 0.6 mu A cm(-2) mM(-2)) in the glucose sensing due to increased O-2 concentration in the vicinity of the enzyme electrode. The linear range and sensitivity of the electrode are obviously higher than those of the enzyme electrode without Cat (PANI/PAA-GOx). In contrast, despite the complexity of the electrode reaction, the detection limit of the PANI/PAA-GOx/Cat (26.5 +/- 5.2 mu M) was almost same as that of the PANI/PAA-GOx. Moreover, high glucose selectivity was achieved by adopting a bioelectrochemical system which functions at a low potential to avoid the interference of coexisting easily oxidizable compounds.
机译:为了避免通过共存的易于氧化化合物引起的葡萄糖生物溶解的干扰,试图用通过共同固定葡萄糖氧化酶(GOX)和过氧化酶(CAT)制造的酶电极(PANI / PAA-GOX / CAT)的感测。在聚苯胺/聚(丙烯酸)(PANI / PAA)复合膜上。通过监测由电化学O-2还原和酶葡萄糖氧化引起的溶解O-2的竞争消耗导致O-2减少电流的降低来进行葡萄糖感测。发现固定的猫再现来自伴随Gox催化葡萄糖氧化的H2O2的O-2。结果,酶电极在葡萄糖感测中产生宽的线性范围(高达1.6 +/- 0.0mm葡萄糖)和高灵敏度(49.3 +/-0.6μm(-2)mm(-2))由于酶电极附近的O-2浓度增加。电极的线性范围和灵敏度明显高于没有猫(PANI / PAA-GOX)的酶电极的灵敏度。相反,尽管电极反应的复杂性,但PANI / PAA-GOX / CAT的检测限(26.5 +/-5.2μm)几乎与PANI / PAA-GOX的检测极限相同。此外,通过采用在低电位下起作用的生物电化学系统来实现高血糖选择性,以避免易于氧化化合物的共存的干涉。

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