College of Marine Science and Biological Engineering, Qingdao University of Science and Technology, 53 Zhengzhou Road, Qingdao 266042, China.
College of Chemistry and Chemical Engineering, Yantai University, 30 Qingquan Road, Yantai, 264005, China.
Anal Methods. 2023 May 18;15(19):2326-2333. doi: 10.1039/d3ay00283g.
Developing a simple and easy-to-operate sensing platform for sensitive and reliable target analysis would provide enormous opportunities to boost the applications in clinical biomedicine and disease diagnosis. Herein, a DNA polymerase-powered self-propelled DNA walking strategy was developed to achieve one-step, dual-signal and amplified nucleic acid detection. The sensing platform was fabricated easily by immobilizing two hybrid probes on an electrode surface. Each hybrid probe consisted of a DNA hairpin and a redox reporter-labelled signal strand. The HIV-1 DNA fragment was used as a model target. It could trigger the DNA polymerization cascade between two hairpins assisted by DNA polymerase, accompanying the release of two signal strands from the electrode surface for the concurrent responses of two electrochemical signals of methylene blue and ferrocene. The simultaneous dual-signal and amplified responses facilitated the sensitive and reliable analysis of the target. The low detection limit toward the target nucleic acid could reach 0.1 fM whether by methylene blue or ferrocene responses. It could also achieve the selective discrimination toward mismatched sequences and the application for target detection in a serum sample. The distinct features of the current sensing strategy also include its autonomous one-step operation and no extra DNA reagent requirement for signal amplification except for a DNA polymerase. Thus, it provides an attractive means for biosensor fabrication directed toward the reliable and sensitive analysis of nucleic acids or more analytes.
开发一种简单易用的传感平台,用于灵敏可靠的目标分析,将为临床生物医学和疾病诊断中的应用提供巨大的机会。本文开发了一种基于 DNA 聚合酶的自主式 DNA 行走策略,用于实现一步、双信号和放大的核酸检测。该传感平台通过将两个杂交探针固定在电极表面上,很容易地进行了构建。每个杂交探针由一个 DNA 发夹和一个带有氧化还原报告标记的信号链组成。HIV-1 DNA 片段被用作模型靶标。它可以触发 DNA 聚合酶辅助的两个发夹之间的 DNA 聚合级联反应,伴随着两个信号链从电极表面释放,用于两个电化学信号亚甲蓝和二茂铁的并发响应。同时的双信号和放大响应促进了目标的灵敏可靠分析。通过亚甲蓝或二茂铁响应,对靶核酸的低检测限可达 0.1 fM。它还可以实现对错配序列的选择性区分,并应用于血清样本中的目标检测。当前传感策略的显著特点还包括其自主的一步操作,除了 DNA 聚合酶外,不需要额外的 DNA 试剂进行信号放大。因此,它为面向核酸或更多分析物的可靠和灵敏分析的生物传感器制造提供了一种有吸引力的手段。