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Evaluation of Nanomaterials-biomolecule hybrids for signal enhancement of impedimetric biosensors

机译:纳米材料-生物分子杂合体用于阻抗生物传感器信号增强的评估

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Five different Nano-materials (NMs) were used for making hybrid conjugates with Protein-A (PrA), a biomolecule that binds specifically with antibodies (Abs). The choice of NMs (Gold, CdS, SrTiO3, Graphene Oxide and Polystyrene) exhibit both inorganic and organic NMs, with a wide range of electrical characteristics i.e., from metal, semiconductor to non conducting dielectric materials. The NMs-PrA conjugates prepared were characterized using UV-visible spectroscopy and fluorescence microscopy before use for biosensor application. These hybrids were than compared for their relative efficacy in enhancing the biosensor signal as recorded using faradaic electrochemical impedance spectroscopy (EIS). A nanogap interdigitated electrodes array (IDEA) sensor was coated with rabbit IgG antibodies and the binding signal from NM-PrA was compared with that of PrA binding alone. The EIS signal was analyzed by fitting the data to a Randles equivalent circuit. Values of two prime circuit elements i.e., charge transfer resistance (R-Ct) and double layer capacitance (C-dl) were determined from the best fit. The difference between the two signals provided the insight into the mechanisms for different NMs and the relative efficiency in signal enhancement.
机译:五种不同的纳米材料(NMs)用于制备与Protein-A(PrA)的杂合物,PrA是与抗体(Abs)特异性结合的生物分子。 NM的选择(金,CdS,SrTiO3,氧化石墨烯和聚苯乙烯)同时具有无机和有机NM,具有广泛的电气特性,即从金属,半导体到不导电的介电材料。在用于生物传感器之前,使用紫外-可见光谱和荧光显微镜对制备的NMs-PrA偶联物进行表征。然后比较这些杂合体在增强生物传感器信号方面的相对功效,如使用法拉第电化学阻抗谱(EIS)所记录的。纳米间隙叉指电极阵列(IDEA)传感器涂有兔IgG抗体,并将来自NM-PrA的结合信号与单独的PrA结合信号进行比较。通过将数据拟合到Randles等效电路来分析EIS信号。根据最佳拟合确定两个主要电路元件的值,即电荷转移电阻(R-Ct)和双层电容(C-dl)。两种信号之间的差异为深入了解不同NM的机制以及信号增强的相对效率提供了见识。

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