Ishige Yu, Shimoda Maki, Kamahori Masao
Central Research Laboratory, Hitachi Ltd., 1-280 Higashi-Koigakubo, Kokubunji-shi, Tokyo 185-8601, Japan.
Biosens Bioelectron. 2009 Jan 1;24(5):1096-102. doi: 10.1016/j.bios.2008.06.012. Epub 2008 Jun 17.
We developed a field-effect transistor (FET)-based enzyme sensor that detects an enzyme-catalyzed redox-reaction event as an interfacial potential change on an 11-ferrocenyl-1-undecanethiol (11-FUT) modified gold electrode. While the sensitivity of ion-sensitive FET (ISFET)-based enzyme sensors that detect an enzyme-catalyzed reaction as a local pH change are strongly affected by the buffer conditions such as pH and buffer capacity, the sensitivity of the proposed FET-based enzyme sensor is not affected by them in principle. The FET-based enzyme sensor consists of a detection part, which is an extended-gate FET sensor with an 11-FUT immobilized gold electrode, and an enzyme reaction part. The FET sensor detected the redox reaction of hexacyanoferrate ions, which are standard redox reagents of an enzymatic assay in blood tests, as a change in the interfacial potential of the 11-FUT modified gold electrode in accordance with the Nernstian response at a slope of 59 mV/decade at 25 degrees C. Also, the FET sensor had a dynamic range of more than five orders and showed no sensitivity to pH. A FET-based enzyme sensor for measuring cholesterol level was constructed by adding an enzyme reaction part, which contained cholesterol dehydrogenase and hexacyanoferrate (II)/(III) ions, on the 11-FUT modified gold electrode. Since the sensitivity of the FET sensor based on potentiometric detection was independent of the sample volume, the sample volume was easily reduced to 2.5 microL while maintaining the sensitivity. The FET-based enzyme sensor successfully detected a serum cholesterol level from 33 to 233 mg/dL at the Nernstian slope of 57 mV/decade.
我们开发了一种基于场效应晶体管(FET)的酶传感器,该传感器将酶催化的氧化还原反应事件检测为11-二茂铁基-1-十一硫醇(11-FUT)修饰金电极上的界面电位变化。虽然基于离子敏感场效应晶体管(ISFET)的酶传感器将酶催化反应检测为局部pH变化,其灵敏度会受到pH和缓冲容量等缓冲条件的强烈影响,但所提出的基于FET的酶传感器的灵敏度原则上不受这些条件的影响。基于FET的酶传感器由一个检测部分和一个酶反应部分组成,检测部分是一个带有固定有11-FUT的金电极的扩展栅FET传感器。该FET传感器检测到亚铁氰化物离子的氧化还原反应,亚铁氰化物离子是血液检测中酶促测定的标准氧化还原试剂,在25℃下,其作为11-FUT修饰金电极的界面电位变化,符合能斯特响应,斜率为59 mV/十倍。此外,该FET传感器的动态范围超过五个数量级,并且对pH不敏感。通过在11-FUT修饰的金电极上添加一个包含胆固醇脱氢酶和亚铁氰化物(II)/(III)离子的酶反应部分,构建了一种用于测量胆固醇水平的基于FET的酶传感器。由于基于电位检测的FET传感器的灵敏度与样品体积无关,因此在保持灵敏度的同时,样品体积很容易减少到2.5微升。基于FET的酶传感器在能斯特斜率为57 mV/十倍时,成功检测到血清胆固醇水平在33至233 mg/dL之间。