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基于固定化荧光适体/量子点分子开关的流动模式下实时无标记分析物检测。

Real-time and label-free analyte detection in a flow-through mode using immobilized fluorescent aptamer/quantum dots molecular switches.

机构信息

Smart Polymers Research Corporation, 108 4th Street, Belleair Beach, FL 33786, USA.

Smart Polymers Research Corporation, 108 4th Street, Belleair Beach, FL 33786, USA.

出版信息

Biosens Bioelectron. 2015 Apr 15;66:290-6. doi: 10.1016/j.bios.2014.11.034. Epub 2014 Nov 20.

Abstract

Inspired by the goal to create a biosensor with designer specificity for real-time detection of unlabeled analytes in a flow-through mode, we designed a miniature flow cell with interchangeable quartz window carrying immobilized aptamer/quantum dot molecular switches as a part of a portable fluorescent setup. The inner surface of the 1.5mm ID, 12µl flow cell quartz window has been modified with the aptamer sensing complexes containing highly-fluorescent quantum dots. The aptamer complexes were designed as molecular switches to undergo conformational change and release fluorescent label upon interaction with the flow of the analyte, causing fluorescence decrease. The specificity of the sensor was designed to address the light chain of Botulinum Neurotoxin A and Ricin Toxin A chain, which could be specifically and repeatedly detected in the flow of 60µl/min with sensitivity comparable to other real-time detection methods. The specifics of quantum dots use as fluorescent labels for continuous monitoring under constant UV illumination were outlined. The possibility for multispecific sensing was explored by testing of bi-specific sensor. This work shows the possibility of surface-bound aptamer sensing for flow-through analyte detection and provides a useful tool to perform surface fluorescent studies in real-time. The flexibility of the described design allows for sensor specificity change through altering the specificity of the aptamer. Future work should address response quantification. The described sensing approach can be adapted to a number of environmental or clinical targets.

摘要

受创建具有设计特异性的生物传感器以实时检测流动模式下未标记分析物的目标的启发,我们设计了一种带有可互换石英窗的微型流动池,其中载有固定化适体/量子点分子开关,作为便携式荧光装置的一部分。1.5mm ID、12µl 流动池石英窗的内表面经过修饰,带有包含高荧光量子点的适体传感复合物。适体复合物被设计为分子开关,在与分析物流动相互作用时会发生构象变化并释放荧光标记,从而导致荧光强度降低。传感器的特异性旨在针对肉毒神经毒素 A 的轻链和蓖麻毒素 A 链进行设计,这两种毒素可以在 60µl/min 的流速下进行特异性和重复性检测,其灵敏度可与其他实时检测方法相媲美。概述了使用量子点作为荧光标记进行连续监测的细节,这些量子点在恒定紫外光照射下使用。通过测试双特异性传感器,探索了多特异性传感的可能性。这项工作展示了基于表面结合适体的用于流动分析物检测的可能性,并提供了一种有用的工具,可用于实时进行表面荧光研究。所描述的设计的灵活性允许通过改变适体的特异性来改变传感器的特异性。未来的工作应解决响应的量化问题。所描述的传感方法可以适应许多环境或临床靶标。

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