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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 >Enzyme-free and label-free fluorescence aptasensing strategy for highly sensitive detection of protein based on target-triggered hybridization chain reaction amplification
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Enzyme-free and label-free fluorescence aptasensing strategy for highly sensitive detection of protein based on target-triggered hybridization chain reaction amplification

机译:基于目标触发的杂交链反应扩增的高灵敏度检测蛋白质的无酶无标记荧光适体策略

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摘要

Proteins are of great importance in medical and biological fields. In this paper, a novel fluorescent aptasensing strategy for protein assay has been developed based on target-triggered hybridization chain reaction (HCR) and graphene oxide (GO)-based selective fluorescence quenching. Three DNA probes, a helper DNA probe (HP), hairpin probe 1 (H1) and hairpin probe 2 (H2) are ingeniously designed. In the presence of the target, the aptamer sequences in HP recognize the target to form a target aptamer complex, which causes the HP conformation change, and then triggers the chain-like assembly of H1 and H2 through the hybridization chain reaction, generating a long chain of HP leading complex of H1 and H2. At last the fluorescence indicator SYBR Green I (SG) binds with the long double strands of the HCR product through both intercalation and minor groove binding. When GO was added into the solutions after HCR, the free H1, H2 and SG would be closely adsorbed onto GO surface via pi-pi stacking. However, the HCR product cannot be adsorbed on GO surface, thereby the SG bound to HCR product gives a strong fluorescence signal dependent on the concentration of the target. With the use of platelet-derived growth factor BB (PDGF-BB) as the model analyte, this newly designed protocol provides a highly sensitive fluorescence detection of PDGF-BB with a limit of detection down to 1.25 pM, and also exhibit good selectivity and applicability in complex matrixes. Therefore, the proposed aptasensing strategy based on target-triggered hybridization chain reaction amplification should have wide applications in the diagnosis of genetic diseases due to its simplicity, low cost, and high sensitivity at extremely low target concentrations. (C) 2015 Elsevier B.V. All rights reserved.
机译:蛋白质在医学和生物学领域非常重要。在本文中,基于目标触发的杂交链反应(HCR)和基于氧化石墨烯(GO)的选择性荧光猝灭,开发了一种用于蛋白质测定的新型荧光适体策略。精心设计了三种DNA探针,即辅助DNA探针(HP),发夹探针1(H1)和发夹探针2(H2)。在存在靶标的情况下,HP中的适体序列会识别靶标以形成靶标适体复合物,从而导致HP构象变化,然后通过杂交链反应触发H1和H2的链状组装,从而产生长链H1和H2的HP主要复合物链。最后,荧光指示剂SYBR Green I(SG)通过嵌入和微小沟纹结合与HCR产物的长双链结合。当在HCR之后将GO添加到溶液中时,游离的H1,H2和SG将通过pi-pi堆积紧密吸附到GO表面。然而,HCR产物不能被吸附在GO表面上,从而与HCR产物结合的SG给出强的荧光信号,这取决于靶的浓度。通过使用血小板衍生的生长因子BB(PDGF-BB)作为模型分析物,该新设计的方案可对PDGF-BB进行高灵敏度的荧光检测,检测限低至1.25 pM,并且具有良好的选择性和在复杂矩阵中的适用性。因此,基于靶标触发的杂交链反应扩增的拟真策略由于其简单,低成本和在极低靶标浓度下的高灵敏度而在遗传疾病的诊断中应具有广泛的应用。 (C)2015 Elsevier B.V.保留所有权利。

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