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Design variations of a polymer-enzyme composite biosensor for glucose: Enhanced analyte sensitivity without increased oxygen dependence

机译:用于葡萄糖的聚合物-酶复合生物传感器的设计变型:在不增加氧依赖性的情况下提高了分析物的灵敏度

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摘要

The glucose sensitivity and oxygen dependence of a variety of implantable biosensors based on glucose oxidase (GOx), incorporating an electrosynthesized poly-o-phenylenediamine (PPD) permselective barrier on 125-mu m diameter Pt disks (Pt-D) and cylinders (Pt-C, 1-mm length), were measured and compared. Full glucose calibrations and experimental monitoring of solution oxygen concentration allowed us to determine apparent Michaelis-Menten parameters for glucose and oxygen. In the linear region of glucose response, the most sensitive biosensor design studied was Pt-D/PPD/GOx (enzyme deposited over polymer) that was similar to 20 times more sensitive than the more widely used Pt-C/GOx/PPD (enzyme immobilized before polymer deposition) configuration. The oxygen dependence, quantified as K-M(O-2), of both active and less active designs was surprisingly similar, a finding that could be rationalized in terms of an increase in K-M(G) with increased enzyme loading. The Pt-D/PPD/GOx design will now enable us to explore glucose concentration dynamics in smaller and layered brain regions with good sensitivity and minimal interference from fluctuations in tissue pO(2). (c) 2005 Elsevier B.V. All rights reserved.
机译:多种基于葡萄糖氧化酶(GOx)的可植入生物传感器的葡萄糖敏感性和氧依赖性,在直径125微米的Pt盘(Pt-D)和圆柱体(Pt)上结合了电合成的聚邻苯二胺(PPD)选择性渗透屏障-C,长度为1毫米),并进行了比较。完整的葡萄糖校准和溶液氧浓度的实验监控使我们能够确定葡萄糖和氧的表观Michaelis-Menten参数。在葡萄糖反应的线性区域中,研究的最敏感的生物传感器设计是Pt-D / PPD / GOx(沉积在聚合物上的酶),其敏感性比使用更广泛的Pt-C / GOx / PPD(酶)高出20倍。在聚合物沉积之前固定)配置。活性和低活性设计的氧依赖性(量化为K-M(O-2))令人惊讶地相似,这一发现可以通过增加酶负载而增加K-M(G)来合理化。 Pt-D / PPD / GOx设计现在将使我们能够以良好的灵敏度和最小的组织pO(2)波动干扰来探索较小和分层大脑区域中的葡萄糖浓度动态。 (c)2005 Elsevier B.V.保留所有权利。

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