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首页> 外文期刊>Proceedings >Microfluidic Impedance Biosensor Chip with DNA-Based Self-Assembled Monolayers for Label-Free Detection of Cardiac Biomarker Troponin I
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Microfluidic Impedance Biosensor Chip with DNA-Based Self-Assembled Monolayers for Label-Free Detection of Cardiac Biomarker Troponin I

机译:微流体阻抗生物传感器芯片与基于DNA的自组装单层,用于无标记检测心脏生物标志物肌钙蛋白I

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A microfluidic chip for electrochemical impedance spectroscopy (EIS) is presented as biosensor for the detection of cardiac troponin I (cTnI). Troponin I is one of the most specific diagnostic serum biomarkers for myocardial infarction. As impedimetric biosensors allow direct and label-free analyte detection, they are particularly suitable for fast biomarker detection. This is essential in the diagnosis of cardiac infarctions to enable an early treatment promoting a positive outcome. The microfluidic impedance biosensor chip presented here consists of a microscope glass slide serving as base plate, sputtered electrodes, and a polydimethylsiloxane (PDMS) microchannel. Electrode functionalization protocols were developed considering a low initial impedance in addition to analyte-specific binding by corresponding antibodies and reduction of non-specific protein adsorption to prevent false-positive signals. Reagents tested for self-assembled monolayers (SAMs) on gold electrodes included thiolated hydrocarbons and thiolated oligonucleotides, where SAMs based on the latter showed a better performance. The corresponding antibody (anti-cTnI) was covalently coupled on the SAM using carbodiimide chemistry. The PDMS microchannel was bonded on the glass slide with the functionalized electrodes, and the completed microfluidic impedance biosensor chip was connected to the readout system. Sampling and measurement took only a few minutes. Application of a human serum albumin (HSA) sample, 1000 ng/mL, led to negligible signal changes, while application of a troponin I sample, 1 ng/mL, led to a significant signal shift in the Nyquist plot. The results are promising regarding specific detection of clinically relevant concentrations of cardiac markers with the newly developed impedance biosensor chip.
机译:用于电化学阻抗光谱(EIS)的微流体芯片被呈现为用于检测心肌肌钙蛋白I(CTNI)的生物传感器。肌钙蛋白I是心肌梗死最具体的诊断血清生物标志物之一。由于阻抗生物传感器允许直接和无标记的分析物检测,它们特别适用于快速生物标志物检测。这对于诊断心脏梗塞的诊断至关重要,使得早期治疗促进阳性结果。这里呈现的微流体阻抗生物传感器芯片由用作底板,溅射电极和聚二甲基硅氧烷(PDMS)微通道的显微镜玻璃载玻片。除了通过相应的抗体和降低非特异性蛋白质吸附的分析物特异性结合之外,考虑到低初始阻抗的电极官能化方案。在金电极上用于自组装单层(SAMS)的试剂包括硫醇化烃和硫化寡核苷酸,其中基于后者的SAMS显示出更好的性能。使用碳二亚胺化学在山姆上共价偶联相应的抗体(抗CTNI)。 PDMS微通道在具有官能化电极的玻璃载玻片上粘合,并且完成的微流体阻抗生物传感器芯片连接到读出系统。抽样和测量只花了几分钟。人血清白蛋白(HSA)样品,1000ng / ml的施用导致信号变化可忽略不计,而肌钙蛋白I样品的施用为1ng / ml,导致奈奎斯特图中的显着信号换档。结果是有关对新开发的阻抗生物传感器芯片的特异性检测临床相关浓度的心脏标志物的特异性检测。

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