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Portable Optoelectronic System for Monitoring Enzymatic Chemiluminescent Reaction

机译:用于监测酶化学发光反应的便携式光电系统

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This work presents a portable lab-on-chip system, based on thin film electronic devices and an all-glass microfluidic network, for the real-time monitoring of enzymatic chemiluminescent reactions. The microfluidic network is patterned, through wet etching, in a 1.1 mm-thick glass substrate that is subsequently bonded to a 0.5 mm-thick glass substrate. The electronic devices are amorphous silicon p-i-n photosensors, deposited on the outer side of the thinner glass substrate. The photosensors, the microfluidic network and the electronic boards reading out the photodiodes' current are enclosed in a small metallic box (10 × 8 × 15 cm~3) in order to ensure shielding from electromagnetic interferences. Preliminary tests have been performed immobilizing horseradish peroxidase on the inner wall of the microchannel as model enzyme for detecting hydrogen peroxide. Limits of detection and quantification equal to 18 and 60 μM, respectively, have been found. These values are comparable to the best performances reported in literature for chemiluminescent-based optofiuidic sensors.
机译:这项工作介绍了一种基于薄膜电子设备和全玻璃微流体网络的便携式实验室系统,用于实时监测酶化学发光反应。通过湿法蚀刻在1.1mm厚的玻璃基板中被图案化微流体网络,随后粘合到0.5mm厚的玻璃基板上。电子设备是无定形硅P-I-N光电子,沉积在较薄的玻璃基板的外侧。光电传感器,微流体网络和读出光电二极管电流的电子板封闭在小金属盒(10×8×15cm〜3)中,以确保从电磁干扰屏蔽。已经在微通道的内壁上固定胰辣根过氧化物酶作为用于检测过氧化氢的模型酶。已经发现检测和定量的限制,分别等于18和60μm。这些值与化学发光的替代光学传感器的文献中报告的最佳性能相当。

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