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聚吡咯-葡萄糖氧化酶生物传感器。多层囊泡中酶包封对分析性能的影响。

Polypyrrole-glucose oxidase biosensor. Effect of enzyme encapsulation in multilamellar vesicles on analytical properties.

作者信息

Olea David, Viratelle Odile, Faure Chrystel

机构信息

Université Bordeaux 1-Centre de Recherche Paul Pascal (UPR 8641), Avenue du Docteur A. Schweitzer, 33600 Pessac, France.

出版信息

Biosens Bioelectron. 2008 Jan 18;23(6):788-94. doi: 10.1016/j.bios.2007.08.018. Epub 2007 Sep 6.

Abstract

In this paper, we present the analytical properties of a new type of polypyrrole-based, enzymatic amperometric biosensor. It is produced by encapsulating the enzyme, glucose oxidase (GOx), into onion-type multilamellar vesicles (MLV). We compare its properties to those of a classical GOx-polypyrrole biosensor. When MLV are used to embed GOx in polypyrrole (PPy), GOx behaves as a Michaelis-Menten enzyme. Without MLV, a deviation to the Michaelis-Menten behaviour is observed for high glucose concentrations. Kinetics parameters of both types of biosensors are studied as a function of the surface charge synthesis: GOx encapsulation induces a 200-fold increase of the apparent maximal current (I(m)(app)) and a 10-fold increase of the apparent Michaelis constant (K(m)(app)). Sensitivity is improved by a factor of 5. GOx is also shown to be less sensitive to inhibiting ions (Cl(-)) when MLV are used. A residual amperometric response of 43% instead of 3% is measured. Finally, the long-term stability of biosensors is improved by the GOx encapsulation. All these results are partially explained by our previous study on the morphology of PPy films fabricated with GOx encapsulated into onion-type MLV (Olea et al., 2007).

摘要

在本文中,我们介绍了一种新型基于聚吡咯的酶促安培生物传感器的分析特性。它是通过将葡萄糖氧化酶(GOx)封装到洋葱型多层囊泡(MLV)中制备而成的。我们将其特性与经典的GOx-聚吡咯生物传感器的特性进行了比较。当使用MLV将GOx嵌入聚吡咯(PPy)中时,GOx表现为米氏酶。在没有MLV的情况下,对于高葡萄糖浓度,观察到其偏离米氏行为。研究了两种生物传感器的动力学参数作为表面电荷合成的函数:GOx封装导致表观最大电流(I(m)(app))增加200倍,表观米氏常数(K(m)(app))增加10倍。灵敏度提高了5倍。当使用MLV时,GOx对抑制离子(Cl(-))也表现出较低的敏感性。测量得到的残余安培响应为43%,而不是3%。最后,GOx封装提高了生物传感器的长期稳定性。我们之前关于用封装到洋葱型MLV中的GOx制备的PPy薄膜形态的研究部分解释了所有这些结果(Olea等人,2007年)。

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