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Integration of an Optical Ring Resonator Biosensor into a Self-Contained Microfluidic Cartridge with Active, Single-Shot Micropumps

机译:将光环谐振器生物传感器集成到带有主动单次微型泵的自成一体的微流控盒中

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摘要

While there have been huge advances in the field of biosensors during the last decade, their integration into a microfluidic environment avoiding external tubing and pumping is still neglected. Herein, we show a new microfluidic design that integrates multiple reservoirs for reagent storage and single-use electrochemical pumps for time-controlled delivery of the liquids. The cartridge has been tested and validated with a silicon nitride-based photonic biosensor incorporating multiple optical ring resonators as sensing elements and an immunoassay as a potential target application. Based on experimental results obtained with a demonstration model, subcomponents were designed and existing protocols were adapted. The newly-designed microfluidic cartridges and photonic sensors were separately characterized on a technical basis and performed well. Afterwards, the sensor was functionalized for a protein detection. The microfluidic cartridge was loaded with the necessary assay reagents. The integrated pumps were programmed to drive the single process steps of an immunoassay. The prototype worked selectively, but only with a low sensitivity. Further work must be carried out to optimize biofunctionalization of the optical ring resonators and to have a more suitable flow velocity progression to enhance the system’s reproducibility.
机译:在过去的十年中,尽管生物传感器领域取得了巨大进步,但仍将其集成到避免外部管道和泵送的微流体环境中仍然被忽略。在这里,我们展示了一种新的微流控设计,该设计整合了多个用于试剂存储的容器和用于时间控制地输送液体的一次性电化学泵。该弹药筒已通过基于氮化硅的光子生物传感器进行了测试和验证,该传感器结合了多个光学环形谐振器作为传感元件,并进行了免疫分析作为潜在的靶标应用。基于演示模型获得的实验结果,设计了子组件并修改了现有协议。新设计的微流控盒和光子传感器在技术基础上分别进行了表征,并表现良好。之后,将传感器功能化以进行蛋白质检测。微流体药筒装有必要的测定试剂。对集成泵进行编程以驱动免疫测定的单个过程步骤。原型选择性地工作,但灵敏度较低。必须进行进一步的工作,以优化光学环形谐振器的生物功能,并使其流速更合适,以增强系统的可重复性。

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