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基于杂交链式反应的无标记和无酶均相电化学生物传感策略:一种简便、灵敏、高度特异的 microRNA 分析方法。

Label-Free and Enzyme-Free Homogeneous Electrochemical Biosensing Strategy Based on Hybridization Chain Reaction: A Facile, Sensitive, and Highly Specific MicroRNA Assay.

机构信息

College of Chemistry and Pharmaceutical Sciences, Qingdao Agricultural University , Qingdao 266109, People's Republic of China.

出版信息

Anal Chem. 2015 Nov 17;87(22):11368-74. doi: 10.1021/acs.analchem.5b02790. Epub 2015 Nov 6.

Abstract

Homogenous electrochemical biosensing strategies have attracted substantial attention, because of their advantages of being immobilization-free and having rapid response and improved recognition efficiency, compared to heterogeneous biosensors; however, the high cost of labeling and the strict reaction conditions of tool enzymes associated with current homogeneous electrochemical methods limit their potential applications. To address these issues, herein we reported, for the first time, a simple label-free and enzyme-free homogeneous electrochemical strategy based on hybridization chain reaction (HCR) for sensitive and highly specific detection of microRNA (miRNA). The target miRNA triggers the HCR of two species of metastable DNA hairpin probes, resulting in the formation of multiple G-quadruplex-incorporated long duplex DNA chains. Thus, with the electrochemical indicator Methylene Blue (MB) selectively intercalated into the duplex DNA chain and the multiple G-quadruplexes, a significant electrochemical signal drop is observed, which is dependent on the concentration of the target miRNA. Thus, using this "signal-off" mode, a simple, label-free and enzyme-free homogeneous electrochemical strategy for sensitive miRNA assay is readily realized. This strategy also exhibits excellent selectivity to distinguish even single-base mismatched miRNA. Furthermore, this method also exhibits additional advantages of simplicity and low cost, since both expensive labeling and sophisticated probe immobilization processes are avoided. Therefore, the as-proposed label-free and enzyme-free homogeneous electrochemical strategy may become an alternative method for simple, sensitive, and selective miRNA detection, and it has great potential to be applied in miRNA-related clinical diagnostics and biochemical research.

摘要

均相电化学生物传感策略因其无需固定化和具有快速响应和提高识别效率的优点,与异相生物传感器相比,引起了广泛关注;然而,当前均相电化学方法中与工具酶相关的标记高成本和严格的反应条件限制了它们的潜在应用。为了解决这些问题,我们首次报道了一种简单的无标记和无酶均相电化学策略,基于杂交链式反应(HCR),用于灵敏和高度特异性检测 microRNA(miRNA)。目标 miRNA 触发两种亚稳态 DNA 发夹探针的 HCR,导致形成多个包含 G-四链体的长双链 DNA 链。因此,电化学指示剂亚甲蓝(MB)选择性地嵌入双链 DNA 链和多个 G-四链体中,观察到明显的电化学信号下降,这取决于目标 miRNA 的浓度。因此,使用这种“信号关闭”模式,很容易实现用于灵敏 miRNA 分析的简单、无标记和无酶均相电化学策略。该策略还表现出出色的选择性,甚至可以区分单个碱基错配的 miRNA。此外,该方法还具有简单和低成本的额外优势,因为避免了昂贵的标记和复杂的探针固定化过程。因此,所提出的无标记和无酶均相电化学策略可能成为一种简单、灵敏和选择性 miRNA 检测的替代方法,并且在 miRNA 相关的临床诊断和生化研究中有很大的应用潜力。

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