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A Temperature-Controllable Microelectrode and Its Application to Protein Immobilization

机译:温度可控的微电极及其在蛋白质固定中的应用

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This letter presents a smart integrated microfluidic device which can be applied to actively immobilize proteins on demand. The active component in the device is a temperature-controllable microelectrode array with a smart polymer film, poly(N-isopropylacrylamide) (PNIPAAm) which can be thermally switched between hydrophilic and hydrophobic states. It is integrated into a micro hot diaphragm having an integrated micro heater and temperature sensors on a 2-micrometer-thick silicon oxide/silicon nitride/silicon oxide (O/N/O) template. Only 36 mW is required to heat the large template area of 2 mm×16 mm to 40℃ within 1 second. To relay the stimulus-response activity to the microelectrode surface, the interface is modified with a smart polymer. For a model biomolecular affinity test, an anti-6-(2, 4-dinitrophenyl) aminohexanoic acid (DNP) antibody protein immobilization on the microelectrodes is demonstrated by fluorescence patterns.
机译:这封信提出了一种智能的集成微流控设备,可用于主动固定所需的蛋白质。该设备中的有源组件是一个温度可控的微电极阵列,带有一个智能聚合物膜聚(N-异丙基丙烯酰胺)(PNIPAAm),可以在亲水和疏水状态之间进行热切换。它被集成到一个微型热隔膜中,该隔膜在2微米厚的氧化硅/氮化硅/氧化硅(O / N / O)模板上具有集成的微型加热器和温度传感器。在1秒内将2 mm×16 mm的较大模板区域加热到40℃只需36 mW。为了将刺激反应活性传递到微电极表面,使用智能聚合物对界面进行了修饰。对于模型生物分子亲和力测试,通过荧光模式证明了抗6-(2,4-二硝基苯基)氨基己酸(DNP)抗体蛋白固定在微电极上。

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