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A reusable quartz crystal microbalance biosensor for highly specific detection of single-base DNA mutation

机译:可重复使用的石英晶体微量天平生物传感器,用于高特异性检测单碱基DNA突变

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摘要

A reusable quartz crystal microbalance (QCM) biosensor based on the toehold-mediated strand displacement reaction (SDR) is first developed for highly specific detection of single-base DNA mutation. N~5, N~(10)-methylenetetrahydrofolate reductase (MTHFR) gene C677T mutation is chosen as a model to investigate the performance of the constructed biosensor. The capture DNA immobilized on the gold electrode surface of QCM hybridizes with the conjugate of biotinylated reporter DNA and streptavidin (abbreviated to reporter probe) to form the recognition layer. A toehold domain in the reporter DNA is specifically designed to bind the complementary mutant DNA and trigger the SDR, eventually resulting in the release of the complex of reporter probe and mutant DNA from the gold surface, and then the recognition layer is mildly regenerated by subsequently injecting the reporter probe again. The fabricated biosensor shows good repeatability for the mutant DNA, as more than 87% signal intensity of the sensor remained after six repetitive measurements. A linear range of 1-75nM is achieved with a detection limit of 0.8nM at room temperature. This biosensor also affords remarkable specificity to the mutant DNA against its wild-type DNA with a discrimination factor of 33. The potential of applying this biosensor in screening real samples is confirmed by spiked HeLa cells lysate with a recovery of 108%. The proposed sensing strategy provides a simple and universal solution for repetitive and highly specific detection of single-base DNA mutation.
机译:基于脚趾介导的链置换反应(SDR)的可重复使用的石英晶体微天平(QCM)生物传感器首先被开发用于高度特异性地检测单碱基DNA突变。选择N〜5,N〜(10)-亚甲基四氢叶酸还原酶(MTHFR)基因C677T突变作为模型来研究构建的生物传感器的性能。固定在QCM金电极表面的捕获DNA与生物素化的报道分子DNA和链霉亲和素(缩写为报道分子探针)的结合物杂交,形成识别层。报告基因DNA中的脚趾结构域经过特殊设计,可以结合互补的突变DNA并触发SDR,最终导致报告探针和突变DNA的复合物从金表面释放出来,然后通过随后的反应温和地再生识别层再次注入报告探针。所制造的生物传感器对突变型DNA表现出良好的可重复性,因为经过六次重复测量后,传感器的信号强度仍超过87%。在室温下,检测限为0.8nM,可实现1-75nM的线性范围。该生物传感器还对突变型DNA的野生型DNA提供了出色的特异性,辨别因子为33。通过掺入的HeLa细胞裂解液可回收108%的蛋白质,证实了将该生物传感器用于筛选真实样品的潜力。所提出的传感策略为重复和高度特异性地检测单碱基DNA突变提供了一种简单而通用的解决方案。

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