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Fabrication of Troponin I Biosensor Composed of Multi-Functional DNA Structure/Au Nanocrystal Using Electrochemical and Localized Surface Plasmon Resonance Dual-Detection Method

机译:电化学和局部表面等离子体共振双检测法制备多功能DNA结构/金纳米晶体组成的肌钙蛋白I生物传感器

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摘要

In the present study, we fabricated a dual-mode cardiac troponin I (cTnI) biosensor comprised of multi-functional DNA (MF-DNA) on Au nanocrystal (AuNC) using an electrochemical method (EC) and a localized surface plasmon resonance (LSPR) method. To construct a cTnI bioprobe, a DNA 3 way-junction (3WJ) was prepared to introduce multi-functionality. Each DNA 3WJ arm was modified to possess a recognition region (Troponin I detection aptamer), an EC-LSPR signal generation region (methylene blue: MB), and an anchoring region (Thiol group), respectively. After an annealing step, the multi-functional DNA 3WJ was assembled, and its configuration was confirmed by Native-TBM PAGE for subsequent use in biosensor construction. cTnI was also expressed and purified for use in biosensor experiments. To construct an EC-LSPR dual-mode biosensor, AuNCs were prepared on an indium-tin-oxide (ITO) substrate using an electrodeposition method. The prepared multi-functional (MF)-DNA was then immobilized onto AuNCs by covalent bonding. Field emission scanning electron microscope (FE-SEM) and atomic force microscopy (AFM) were used to analyze the surface morphology. LSPR and electrochemical impedance spectroscopy (EIS) experiments were performed to confirm the binding between the target and the bioprobe. The results indicated that cTnI could be effectively detected in the buffer solution and in diluted-human serum. Based on the results of these experiments, the loss on drying (LOD) was determined to be 1.0 pM in HEPES solution and 1.0 pM in 10% diluted human serum. Additionally, the selectivity assay was successfully tested using a number of different proteins. Taken together, the results of our study indicate that the proposed dual-mode biosensor is applicable for use in field-ready cTnI diagnosis systems for emergency situations.
机译:在本研究中,我们使用电化学方法(EC)和局部表面等离振子共振(LSPR)在金纳米晶体(AuNC)上制造了由多功能DNA(MF-DNA)组成的双模式心脏肌钙蛋白I(cTnI)生物传感器。 ) 方法。为了构建cTnI生物探针,准备了DNA 3方向连接(3WJ)以引入多功能。每个DNA 3WJ臂都经过修饰,分别具有识别区域(肌钙蛋白I检测适体),EC-LSPR信号产生区域(亚甲基蓝:MB)和锚定区域(硫醇基)。退火步骤后,组装多功能DNA 3WJ,并通过Native-TBM PAGE确认了其构型,随后用于生物传感器构建。还表达并纯化了cTnI,用于生物传感器实验。为了构建EC-LSPR双模生物传感器,使用电沉积方法在铟锡氧化物(ITO)基板上制备AuNC。然后将制备的多功能(MF)-DNA通过共价键固定在AuNC上。场发射扫描电子显微镜(FE-SEM)和原子力显微镜(AFM)被用来分析表面形态。进行了LSPR和电化学阻抗谱(EIS)实验,以确认靶标与生物探针之间的结合。结果表明,可以在缓冲溶液和稀释的人血清中有效检测cTnI。根据这些实验的结果,确定在HEPES溶液中的干燥失重(LOD)为1.0 pM,在10%稀释的人血清中为1.0 pM。另外,使用多种不同的蛋白质成功地测试了选择性测定。两者合计,我们的研究结果表明,提出的双模式生物传感器适用于紧急情况下的现场就绪cTnI诊断系统。

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