首页> 外文会议>International Conference on Solid-State Sensors, Actuators and Microsystems & Eurosensors XXXIII >3D Printed Bio-Sensing Chip for the Determination of Bacteria Antibiotic-Resistant Profile
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3D Printed Bio-Sensing Chip for the Determination of Bacteria Antibiotic-Resistant Profile

机译:3D打印生物传感芯片,用于测定细菌的抗生素抗性

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This study presents a novel 3D printed bio-sensing chip to characterize the antibiotic-resistant reaction profile of bacteria in real time for the first time. The chip adapts the dead-end filling method to achieve the sample solution transfer process. The experimental results demonstrate several accomplishments: (1) fabrication of the disposable and real-time bacteria detection system by 3D-printing; (2) alleviation of the typical leakage problems associated with 3D-printed structures during the transfer process for the sample solutions; and (3) demonstration of the detection of E. coli-antibiotic tests using a smart phone with the RGB pixel analysis app with the color identification to achieve the bacteria antibiotic-resistant profile. As such, this work could open up a new class of disposable bio-sensing characterization systems based on the combination of 3D-printing and wireless data transmission technologies.
机译:这项研究首次提出了一种新颖的3D打印生物传感芯片,以实时表征细菌的抗生素抗药性反应谱。该芯片采用死角填充方法来实现样品溶液的转移过程。实验结果表明了以下几方面的成就:(1)通过3D打印制造一次性和实时细菌检测系统; (2)减轻样品溶液转移过程中与3D打印结构相关的典型泄漏问题; (3)演示使用带有RGB像素分析应用程序的智能手机对大肠杆菌进行抗生素检测的方法,该应用程序具有颜色识别功能,以实现细菌的抗药性。因此,这项工作可以基于3D打印和无线数据传输技术的组合,开辟一类新型的一次性生物传感表征系统。

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