Central Research Laboratory, Hitachi, Ltd., 1-280 Higashi-Koigakubo, Kokubunji-shi, Tokyo 185-8601, Japan.
Biosens Bioelectron. 2010 Dec 15;26(4):1366-72. doi: 10.1016/j.bios.2010.07.053. Epub 2010 Jul 21.
An FET-based biosensor with a ferrocene-modified gold electrode detects the enzyme-produced electrons by using mediators that transfer the electrons from the enzyme to the sensor. Since an extended-gate FET sensor with a light-shielding mask can be operated without a light-shielding box, a small portable instrument will soon be realised. However, when the FET sensor detected enzyme-catalyzed products with the mediators under light conditions, measurements fluctuated due to photo-reduction of the mediators, resulting in decreased sensitivity. To improve sensitivity by reducing the fluctuation, we developed a procedure for directly detecting enzyme-catalyzed products without using the mediators. The key technique used in this procedure was a measurement technique using our developed potential-keeping method, in which the modified electrode of the FET sensor was oxidised by ferricyanide solution to make its surface the same high potential every time, and this high potential was kept until measurement because of the high input impedance of the FET structure. After this method was applied, the interfacial potential of the gold electrode decreased depending on the amount of enzyme-catalyzed products due to the ferrocene molecules immobilised on the gold electrode directly reacting with the products. The results obtained in light conditions indicated that model compounds of the products were detected from 10 μM to 10 mM with the Nernstian response of 59.2 mV/decade. Also, this method was applied to pesticide detection by using the enzyme inhibition by pesticide, and 5 ppb of diazinon was successfully detected by using only a sensor chip.
基于场效应晶体管 (FET) 的生物传感器采用金电极修饰的二茂铁,通过介体将酶产生的电子从酶转移到传感器上来检测电子。由于具有遮光掩模的扩展门 FET 传感器可以在没有遮光盒的情况下运行,因此小型便携式仪器很快就会实现。然而,当 FET 传感器在光照条件下使用介体检测酶催化产物时,由于介体的光还原,测量值会发生波动,从而导致灵敏度降低。为了通过减少波动来提高灵敏度,我们开发了一种无需使用介体直接检测酶催化产物的程序。该程序中使用的关键技术是我们开发的电位保持测量技术,其中 FET 传感器的修饰电极被铁氰化钾溶液氧化,以使每次的表面都具有相同的高电势,并且由于 FET 结构的高输入阻抗,该高电势会一直保持到测量结束。应用该方法后,由于固定在金电极上的二茂铁分子直接与产物反应,金电极的界面电势会根据酶催化产物的量而降低。在光照条件下获得的结果表明,模型化合物的产物可从 10 μM 到 10 mM 进行检测,其响应的尼斯特斜率为 59.2 mV/decade。此外,该方法还应用于农药检测,通过利用农药对酶的抑制作用,仅使用传感器芯片就成功检测到了 5 ppb 的敌敌畏。