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 >Label-free electrochemical nucleic acid biosensing by tandem polymerization and cleavage-mediated cascade target recycling and DNAzyme amplification
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Label-free electrochemical nucleic acid biosensing by tandem polymerization and cleavage-mediated cascade target recycling and DNAzyme amplification

机译:通过串联聚合和裂解介导的级联靶标回收和DNAzyme扩增实现无标记的电化学核酸生物传感

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摘要

Owing to the intrinsic importance of nucleic acid as bio-targets, the achievement of its simple and sensitive detection with high confidence is very essential for biological studies and diagnostic purposes. Herein, a label-free, isothermal, and ultrasensitive electrochemical detection of target DNA was developed by using a tandem polymerization and cleavage-mediated cascade target recycling and DNAzyme releasing amplification strategy. Upon sensing of the nucleic acid analyte for the assembled hairpin-like probe DNA on the electrode, the DNA polymerase guided the target recycling and simultaneously triggered the lambda exonuclease cleavage, accompanied by the cascade recycling of the released new complementary strand and the amplified liberation of the G-rich sequence of the HRP-mimicking DNAzyme. The electrocatalytic reduction of H2O2 by the generated hemin/G-quadruplex DNAzyme was used for the signal readout and further amplification toward target response. Such tandem functional operation by DNA polymerase, lambda exonuclease and DNAzyme endows the developed biosensor with a high sensitivity and also a high confidence. A low detection limit of 5 fM with an excellent selectivity toward target DNA could be achieved. It also exhibits the distinct advantages of simplicity in probe design and biosensor fabrication, and label-free electrochemical detection, thus may offer a promising avenue for the applications in disease diagnosis and clinical biomedicine. (C) 2015 Elsevier B.V. All rights reserved.
机译:由于核酸作为生物靶标的内在重要性,以高可信度实现其简单而灵敏的检测对于生物学研究和诊断目的非常重要。在本文中,通过使用串联聚合和裂解介导的级联靶标回收和DNA酶释放扩增策略,开发了一种无标记,等温和超灵敏的靶标DNA电化学检测方法。在检测到电极上已组装的发夹状探针DNA的核酸分析物后,DNA聚合酶指导靶标的回收并同时触发了λ核酸外切酶的切割,同时伴随着释放的新互补链的级联回收和扩增的模拟HRP的DNAzyme的富含G的序列。产生的血红素/ G-四链体DNA酶对H2O2的电催化还原被用于信号读出和进一步向靶标反应的扩增。通过DNA聚合酶,λ核酸外切酶和DNAzyme进行的此类串联功能操作赋予了开发的生物传感器高度的敏感性和高度的信心。可以实现5 fM的低检测限,并且对目标DNA具有出色的选择性。它还具有探针设计和生物传感器制造简单以及无标记电化学检测的独特优势,因此可以为疾病诊断和临床生物医学中的应用提供有希望的途径。 (C)2015 Elsevier B.V.保留所有权利。

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