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One-Step Modification of Electrode Surface for Ultrasensitive and Highly Selective Detection of Nucleic Acids with Practical Applications

机译:一步一步修饰电极表面,用于核酸的超灵敏和高选择性检测及实际应用

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摘要

Electrochemistry-based nucleic acid sensors have long been plagued by the limited accessibility of target molecules to the capture probes immobilized on heterogeneous surfaces, which largely hinders their practical application. In this work, we find that dual-thiolated hairpin DNA immobilized on an electrode surface as the capture probe cannot only efficiently bind with target molecule as well as the signal probe but also process impressive protein-repelling ability, which allows us to directly detect as few as attomolar targets (similar to 300 copies in 100 mu L sample) with single-base discrimination ability. Meanwhile, the preparation of functional electrode surface becomes simple (one step), fast (30 min), and homogeneous (just one probe modified surface without small molecules coassembled). These advantages are attributed to the unique probe design, where the stem of the capture probe can act as rigid scaffold to keep it upright, and the loop of the capture probe may provide an enclosed platform for target and signal probe binding. More importantly, through tuning the distance between enzyme and the electrode surface (from 8.5 to 13.6 nm), we find that the performance of the sensor can be favorably controlled. Furthermore, taking advantage of this new binding model, different complex samples including polymerase chain reaction (PCR) product, mRNA, and micro. RNA can be conveniently analyzed, which may hold great potential for real application.
机译:长期以来,基于电化学的核酸传感器一直困扰着目标分子对固定在异质表面上的捕获探针的有限可达性,这在很大程度上阻碍了它们的实际应用。在这项工作中,我们发现固定在电极表面的双硫醇化发夹DNA作为捕获探针不仅可以与靶分子以及信号探针有效结合,而且还具有令人印象深刻的蛋白质排斥能力,这使我们可以直接检测到具有单碱基识别能力的阿托莫耳靶极少(类似于100μL样品中的300个拷贝)。同时,功能性电极表面的制备变得简单(一个步骤),快速(30分钟)和均匀(仅一个探针修饰的表面,而没有小分子共组装)。这些优点归因于独特的探针设计,其中捕获探针的茎杆可充当刚性支架以保持其直立,并且捕获探针的环可为目标和信号探针的结合提供封闭的平台。更重要的是,通过调节酶和电极表面之间的距离(从8.5到13.6 nm),我们发现可以很好地控制传感器的性能。此外,利用这种新的结合模型,可以处理不同的复杂样品,包括聚合酶链反应(PCR)产物,mRNA和micro。 RNA可以方便地进行分析,这可能具有巨大的实际应用潜力。

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