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Rolling Circle Amplification in Bead-Based Microfluidic Device with Integrated Photodiode for Fluorescence Signal Transduction

机译:滚动圆形扩增在基于珠子的微流体装置中,具有集成光电二极管进行荧光信号转导

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The detection of pathogens in primary care settings is critical, not only for virus detection but also for the detection of antibiotic resistant bacteria. Microfluidic devices can be used to develop point-of-care detection systems, but are usually insufficiently sensitive for the application. An on-chip isothermal amplification technique, such as the padlock probing-based rolling circle amplification technique, could potentially achieve the desired specificity and sensitivity, while keeping the complexity of the microfluidic device low. In this work, we describe an innovative microfluidic rolling circle amplification performed on microbeads using a continuous flow of solutions with the potential to achieve the required clinical demands in fast and sensitive fashion. Moreover, the integration with amorphous-hydrogenated silicon thin film p-i-n photodiode and a high-pass interference filter to allow the acquisition of the fluorescence signal from the amplification product on-chip, demonstrates the capability of performing the full assay on-chip along with the portability potential of the device.
机译:在初级护理环境中检测病原体至关重要,不仅适用于病毒检测,还用于检测抗生素抗性细菌。微流体装置可用于开发护理点检测系统,但通常对应用不充分敏感。片上等温放大技术,例如挂锁探测的滚动圆扩增技术,可能潜在地达到所需的特异性和灵敏度,同时保持微流体装置的复杂性。在这项工作中,我们描述了一种在微珠上进行的创新的微流体滚动圈放大,使用连续的解决方案流动,具有巨大的溶液,以快速和敏感的方式实现所需的临床需求。此外,与非晶 - 氢化硅薄膜销光电二极管的整合和高通干滤波器,以允许从芯片上的放大产物获取荧光信号,证明了芯片片上的全部测定的能力设备的可移植性电位。

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