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On-Chip Aptamer-Based Sandwich Assay for Thrombin Detection Employing Magnetic Beads and Quantum Dots

机译:基于片上适体的夹心测定,用于利用磁珠和量子点进行凝血酶检测

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In this paper, we report the development of an on-chip aptamer-based fluorescence assay for protein detection and quantification based on sandwich ELISA principles. Thrombin was selected as a model analyte to validate the assay design, which involves two DNA thrombin aptamers recognizing two different epitopes of the protein. Aptamerfunctionalized magnetic beads were utilized to capture the target analyte, while a second aptamer, functionalized with quantum dots, was employed for on-chip detection. The binding of thrombin to the two aptamers via sandwich assay was monitored by fluorescence microscopy. The sandwich assay was performed on disposable microfluidic devices, fabricated on double-sided tapes and polymeric materials using a laser cutting approach. The approach enabled rapid thrombin detection with high specificity. Experimental conditions, such as reagent consumption and incubation time, were optimized in the microchip platform for the lowest limit of detection, highest specificity, and shortest assay time. The analytical performance of the microchip based assay was compared to that in the well plate format (generally utilized for ELISA-based methodologies). The results show that microfluidic chip proved to be a rapid and efficient system for aptamerbased thrombin assays, requiring only minimal (microliter) reagent use. This work demonstrated the successful application of on-chip aptamer-based sandwich assays for detection of target proteins of biomedical importance.
机译:在本文中,我们报告了基于夹心ELISA原理的基于蛋白质适体的片上荧光检测技术的发展,用于蛋白质检测和定量。选择凝血酶作为模型分析物以验证分析设计,该设计涉及识别蛋白质的两个不同表位的两个DNA凝血酶适体。适体功能化的磁珠用于捕获目标分析物,而第二个适体(经量子点功能化)用于芯片上检测。通过夹心测定法,通过荧光显微镜监测凝血酶与两个适体的结合。三明治测定法是在一次性微流体装置上进行的,该装置使用激光切割方法在双面胶带和聚合物材料上制成。该方法能够以高特异性快速检测凝血酶。在微芯片平台上优化了实验条件,例如试剂消耗和孵育时间,以实现最低检测限,最高特异性和最短检测时间。将基于微芯片的测定的分析性能与孔板形式(通常用于基于ELISA的方法)进行了比较。结果表明,微流体芯片被证明是用于基于适体的凝血酶测定的快速而有效的系统,仅需极少的试剂(微升)即可使用。这项工作证明了基于芯片的基于适体的夹心测定法在检测具有生物医学意义的靶蛋白方面的成功应用。

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