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Silica-dispersed glucose oxidase for glucose sensing: in vitro testing in serum and blood and the effect of condensation pH

机译:用于葡萄糖感测的二氧化硅分散葡萄糖氧化酶:在血清和血液中的体外测试以及凝结pH的效果

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摘要

The objectives of this study were to examine the feasibility of using glucose oxidase (GOx) dispersed in a silica matrix for glucose monitoring in whole blood, and then to assess whether the flexibility of silica sol-gel chemistry could be exploited to enhance glucose sensor performance and stability. Silica-dispersed GOx was deployed on platinized platinum (Pt) wire to form a Clark-type amperometric glucose sensor. Sensors were calibrated using buffered glucose standard solutions, and then tested against glucose spiked human serum and whole blood. All serum and whole blood measurements met the minimum FDA requirement of falling within the “A+B region” of a Clark Error Grid. To our knowledge this is the first report of using silica-dispersed GOx to measure glucose in whole blood. The effect of condensation pH on sensor performance was assessed by dispersing GOx in silica condensed at pH 3, 7 and 12, and then testing the sensor response against glucose calibration standards. The pH 12 silica sensors had statistically faster response time, and higher sensor sensitivity compared to pH 7, pH 3 silica and glutaraldehyde crosslinked sensors. Membranes of the pH 12 silica had statistically higher glucose diffusion coefficient than did the pH 7 and 3 sensors. GOx dispersed in pH 12 silica also had the longest half life. We hypothesize that the gel-like pH 12 silica gels provided reduced barriers to glucose diffusion, and the more aqueous microenvironment provided greater stability for the enzyme.
机译:这项研究的目的是检验使用分散在二氧化硅基质中的葡萄糖氧化酶(GOx)进行全血葡萄糖监测的可行性,然后评估是否可以利用二氧化硅溶胶凝胶化学的灵活性来增强葡萄糖传感器的性能和稳定性。将二氧化硅分散的GOx部署在镀铂(Pt)线上,以形成Clark型电流型葡萄糖传感器。使用缓冲的葡萄糖标准溶液校准传感器,然后针对加标葡萄糖的人血清和全血进行测试。所有血清和全血测量结果均符合落入Clark错误栅格“ A + B区域”内的FDA最低要求。据我们所知,这是使用二氧化硅分散的GOx测量全血中葡萄糖的首次报道。通过将GOx分散在pH为3、7和12的二氧化硅中,评估凝结pH对传感器性能的影响,然后根据葡萄糖校准标准测试传感器的响应。与pH 7,pH 3硅胶和戊二醛交联传感器相比,pH 12硅胶传感器在统计上具有更快的响应时间和更高的传感器灵敏度。与pH 7和3传感器相比,pH 12二氧化硅膜的葡萄糖扩散系数在统计学上更高。分散在pH 12的二氧化硅中的GOx的半衰期最长。我们假设凝胶状的pH 12硅胶减少了葡萄糖扩散的屏障,而更多的水性微环境为酶提供了更大的稳定性。

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