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OLED-Based Biosensing Platform with ZnO Nanoparticles for Enzyme Immobilization

机译:基于ZnO纳米粒子的基于OLED的生物传感平台,用于酶的固定

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Organic light-emitting diode (OLED)-based sensing platforms are attractive for photoluminescence (PL)-based monitoring of a variety of analytes. Among the promising OLED attributes for sensing applications is the thin and flexible size and design of the OLED pixel array that is used for PL excitation. To generate a compact, field-deployable sensor, other major sensor components, such as the sensing probe and the photodetector, in addition to the thin excitation source, should be compact. To this end, the OLED-based sensing platform was tested with composite thin biosensing films, where oxidase enzymes were immobilized on ZnO nanoparticles, rather than dissolved in solution, to generate a more compact device. The analytes tested, glucose, cholesterol, and lactate, were monitored by following their oxidation reactions in the presence of oxygen and their respective oxidase enzymes. During such reactions, oxygen is consumed and its residual concentration, which is determined by the initial concentration of the above-mentioned analytes, is monitored. The sensors utilized the oxygen-sensitive dye Pt octaethylporphyrin, embedded in polystyrene. The enzymes were sandwiched between two thin ZnO layers, an approach that was found to improve the stability of the sensing probes.
机译:基于有机发光二极管(OLED)的传感平台对于基于光致发光(PL)的各种分析物监测具有吸引力。用于传感应用的有前途的OLED属性包括用于PL激发的OLED像素阵列的薄而灵活的尺寸和设计。为了产生紧凑的,可现场部署的传感器,除薄激励源外,其他主要传感器组件(例如传感探头和光电探测器)也应紧凑。为此,基于OLED的传感平台已通过复合生物传感薄膜进行了测试,其中氧化酶固定在ZnO纳米颗粒上,而不是溶解在溶液中,以生成更紧凑的设备。通过在氧气和它们各自的氧化酶的存在下跟踪它们的氧化反应来监测测试的分析物,葡萄糖,胆固醇和乳酸盐。在这样的反应期间,氧气被消耗并且其残留浓度被监测,该残留浓度由上述分析物的初始浓度确定。传感器利用了对氧敏感的染料Pt八乙基卟啉,该染料嵌入聚苯乙烯中。酶被夹在两个薄的ZnO层之间,发现这种方法可以改善传感探针的稳定性。

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