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A three-dimensional DNA walking machine for the ultrasensitive dual-modal detection of miRNA using a fluorometer and personal glucose meter

机译:一个三维的DNA的步行机超灵敏dual-modal microrna的检测使用荧光计和个人血糖仪

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摘要

Three-dimensional (3D) DNA walking machines inspired by natural molecular machines have attracted significant attention due to their high walking efficiency and signal amplification capability. Herein, we report a 3D DNA walking machine for the dual-modal detection of miRNA using a fluorometer and personal glucose meter (PGM). The 3D DNA walking machine on magnetic beads (MBs) was coated with the BHQ-H1-FAM hairpin structures (DNA tracks), activated by target miRNA-21 (walking strand) and propelled by a strand displacement reaction. During these processes, the fluorescence of FAM on H1 was turned on (first signal), and the invertase on H2 was introduced into the surface of the MBs. After being separated by an external magnetic field, the invertase hydrolyzed sucrose into glucose to generate a second signal, which was quantified by the PGM. The developed 3D DNA walking machine showed high sensitivity and good specificity, and the detection limits of 98 pM and 60 pM were obtained for the fluorescence-based assay and PGM-based assay, respectively. Compared with the single-modal detection, the developed DNA walking machine can achieve a unique double signal readout and more reliable sensitive performance. In addition, the proposed 3D DNA walking machine was successfully applied to detect miRNA in real biological samples. The 3D DNA walking machine with dual-modal detection has potential applications in disease diagnostics and clinical applications and can satisfy different testing requirements both in the laboratory and field.
机译:三维(3 d) DNA步行机灵感来自自然的分子机器由于其高引起了重大的关注步行效率和信号放大能力。咖啡机dual-modal microrna的检测使用荧光计和个人血糖仪(PGM)。珠子与BHQ-H1-FAM (MBs)涂层发夹结构(DNA追踪),激活目标miRNA-21(步行链)和推动一缕位移反应。过程中,家人对H1的荧光打开(第一信号),H2的蔗糖酶介绍了MBs的表面。由一个外部磁场分离,蔗糖转化酶水解成葡萄糖生成第二个信号,量化的PGM。显示高敏感性和良好的特异性98年的探测极限点到60点荧光技术分析和获得分别PGM-based化验。single-modal检测DNA走发达机可以实现一个独特的双信号读出和更可靠的敏感性能。此外,提出了3 d DNA步行机被成功应用于检测microrna在现实吗生物样品。与dual-modal检测潜力在疾病诊断和临床应用应用程序,可以满足不同的测试在实验室和现场需求。

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