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Integrated multi-biosensors based on an ion-sensitive field-effect transistor using photolithographic techniques

机译:基于光刻技术的基于离子敏感场效应晶体管的集成式多生物传感器

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Two kinds of multifunctional biosensors, one sensitive to glucose and triolein and the other to glucose and urea, have been constructed using semiconductor fabrication techniques. An integrated ISFET (ion-sensitive field-effect transistor) with three hydrogen-ion-sensitive FET elements on one chip was used as a transducer for the biosensor. A photolithographic technique with a water-soluble photocrosslinkable polymer made possible the deposition of patterned enzyme membranes (glucose oxidase, lipase, and urease membranes) and bovine serum albumin membrane around each gate surface of ISFET elements. The multibiosensor for measuring glucose and triolein concentrations determined both glucose concentrations up to 5 mM and triolein concentrations up to 3 mM simultaneously. The biosensor for glucose and urea has a detection range of 0.03 to 3 mM for glucose and 0.1 to 20 mM for urea. Some multibiosensors showed a cross-sensitivity problem due to enzyme contamination. An improved membrane fabrication method to prevent the enzyme contamination is described.
机译:已经使用半导体制造技术构造了两种多功能生物传感器,一种对葡萄糖和三油精敏感,另一种对葡萄糖和尿素敏感。在一个芯片上具有三个氢离子敏感FET元件的集成ISFET(离子敏感场效应晶体管)被用作生物传感器的传感器。使用水溶性光可交联聚合物的光刻技术可以在ISFET元件的每个栅极表面周围沉积图案化的酶膜(葡萄糖氧化酶,脂肪酶和脲酶膜)和牛血清白蛋白膜。用于测量葡萄糖和三油精浓度的多功能生物传感器同时测定了高达5 mM的葡萄糖浓度和高达3 mM的三油精浓度。葡萄糖和尿素的生物传感器对葡萄糖的检测范围为0.03至3 mM,对于尿素的检测范围为0.1至20 mM。一些多生物传感器由于酶污染而显示出交叉敏感性问题。描述了一种防止酶污染的改进的膜制造方法。

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