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首页> 外文期刊>Biosensors & Bioelectronics: The International Journal for the Professional Involved with Research, Technology and Applications of Biosensers and Related Devices >Aptamer-based microfluidic beads array sensor for simultaneous detection of multiple analytes employing multienzyme-linked nanoparticle amplification and quantum dots labels
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Aptamer-based microfluidic beads array sensor for simultaneous detection of multiple analytes employing multienzyme-linked nanoparticle amplification and quantum dots labels

机译:基于适体的微流控微珠阵列传感器,可通过多酶联纳米颗粒扩增和量子点标记同时检测多种分析物

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This study reports the development of an aptamer-mediated microfluidic beads-based sensor for multiple analytes detection and quantification using multienzyme-linked nanoparticle amplification and quantum dots labels. Adenosine and cocaine were selected as the model analytes to validate the assay design based on strand displacement induced by target-aptamer complex. Microbeads functionalized with the aptamers and modified electron rich proteins were arrayed within a microfluidic channel and were connected with the horseradish peroxidases (HRP) and capture DNA probe derivative gold nanoparticles (AuNPs) via hybridization. The conformational transition of aptamer induced by targetaptamer complex contributes to the displacement of functionalized AuNPs and decreases the fluorescence signal of microbeads. In this approach, increased binding events of HRP on each nano sphere and enhanced mass transport capability inherent from microfluidics are integrated for enhancing the detection sensitivity of analytes. Based on the dual signal amplification strategy, the developed aptamer-based microfluidic bead array sensor could discriminate as low as 0.1 pM of adenosine and 0.5 pM cocaine, and showed a 500-fold increase in detection limit of adenosine compared to the off-chip test. The results proved the microfluidic-based method was a rapid and efficient system for aptamerbased targets assays (adenosine (0.1 pM) and cocaine (0.5 pM)),requiring only minimal (microliter) reagent use. This work demonstrated the successful application of aptamer-based microfluidic beads array sensor for detection of important molecules in biomedical fields.
机译:这项研究报告了一种适体介导的基于微流体珠的传感器的开发,该传感器使用多酶联结的纳米粒子扩增和量子点标记对多种分析物进行检测和定量。选择腺苷和可卡因作为模型分析物,以验证基于靶标-适体复合物诱导的链位移的分析设计。用适体和修饰的富电子蛋白质功能化的微珠排列在微流控通道中,并与辣根过氧化物酶(HRP)连接,并通过杂交捕获DNA探针衍生物金纳米颗粒(AuNPs)。目标适体复合物诱导的适体构象转变有助于功能化AuNPs的置换,并降低微珠的荧光信号。在这种方法中,HRP在每个纳米球上的结合事件的增加和微流控技术固有的增强的质量传输能力被整合在一起,以提高分析物的检测灵敏度。基于双信号放大策略,开发的基于适体的微流控微珠阵列传感器可以区分低至0.1 pM的腺苷和0.5 pM的可卡因,并且与芯片外测试相比,腺苷的检测限提高了500倍。结果证明,基于微流体的方法是用于基于适体的靶标测定(腺苷(0.1 pM)和可卡因(0.5 pM))的快速有效的系统,仅需极少的试剂(微升)。这项工作证明了基于适体的微流控微珠阵列传感器在生物医学领域中重要分子检测中的成功应用。

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