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 >Target-driven rolling walker based electrochemical biosensor for ultrasensitive detection of circulating tumor DNA using doxorubicin@tetrahedron-Au tags
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Target-driven rolling walker based electrochemical biosensor for ultrasensitive detection of circulating tumor DNA using doxorubicin@tetrahedron-Au tags

机译:基于目标驱动的滚动步行者的电化学生物传感器,用于使用多柔比星进行循环肿瘤DNA的超敏检测@ Tetrahedron-Au标签

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摘要

In this study, a multiple-legged and highly integrated DNA rolling walker based electrochemical biosensor was developed for ultrasensitive ctDNA analysis through rolling circle amplification (RCA) with doxorubicin@tetrahedron-Au (DOX@TDN-Au) as electrochemical indicator. Upon target-driven RCA, the multiple-legged walker could move along with the predesigned track by strand displacement reactions, resulting in numbers of legs binding irreversibly to iStep probes. The binding of massive legs to iStep probes could effectively impede DOX@TDN-Au tags binding on the surface of sensor and then reached a "signal off" state. Benefiting from the highly amplified efficiency of rolling walker machine and DOX@TDN-Au tags, the established biosensor performed high sensitivity for target detection with a low limit of detection down to 0.29 fM. Moreover, the target ctDNA could hybridize with the ring and capture probe simultaneously, greatly enhancing the specificity of the developed biosensing method. Thus, this biosensing method is a promising tool for detection of ctDNA in the field of clinical diagnostic and tumor progression assessment.
机译:在该研究中,通过用Doxorubicin @ Tetrahedron-Au(Dox @ TDN-Au)作为电化学指示器,开发了一种多腿和高度集成的DNA滚动步行者基于超声CTDNA分析的电化学生物传感器。在目标驱动的RCA时,多条腿的步行者可以通过链置换反应与预测的轨道一起移动,导致腿的数量不可逆地结合到ISTEP探针。大规模腿与ISTEP探针的绑定可以有效地阻碍在传感器表面上的DOX @ TDN-AU标签,然后达到“信号关闭”状态。受益于轧制步行机和DOX @ TDN-AU标签的高度放大效率,所建立的生物传感器对目标检测的高灵敏度具有低于检测限度为0.29 fm的低灵敏度。此外,靶CTDNA可以同时用环和捕获探针杂交,大大提高了发育的生物传感方法的特异性。因此,这种生物传感方法是用于检测临床诊断和肿瘤进展评估领域CTDNA的有希望的工具。

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