Institute of Microelectronics, A(⁎)STAR (Agency for Science Technology and Research), 11 Science Park Road, Singapore Science Park II, 117685, Singapore.
Institute of Microelectronics, A(⁎)STAR (Agency for Science Technology and Research), 11 Science Park Road, Singapore Science Park II, 117685, Singapore.
Biosens Bioelectron. 2014 Nov 15;61:274-9. doi: 10.1016/j.bios.2014.05.017. Epub 2014 May 14.
Serum background is a critical issue for biosensor development as it interferes with the detection of target molecules and may give rise to false positive signal. We present here highly sensitive and selective TNF-α biosensor which is able to detect TNF-α from non-diluted human serum using magnetic bead coupled antibody and electrochemical impedance spectroscopy (EIS) techniques. The process is designed to detect TNF-α from human serum in three stages; (1) abundant protein backgrounds are depleted from the serum using magnetic bead coupled albumin and IgG antibodies, (2) after background depletion TNF-α is captured using magnetic bead coupled TNF-α antibody, and (3) the captured TNF-α is eluted from the magnetic beads and measured using EIS technique in which comb structured gold microelectrodes array (CSGM) is utilized to enhance the detection sensitivity. The system is able to achieve the limit of detection (LOD) at 1 pg/ml (57 fM) and a linear relationship between increasing TNF-α concentrations and charge-transfer resistance in a dynamic range of 1-1000 pg/ml.
血清背景是生物传感器发展的一个关键问题,因为它会干扰目标分子的检测,并可能导致假阳性信号。我们在这里展示了一种高灵敏度和选择性的 TNF-α 生物传感器,它能够使用磁性珠偶联抗体和电化学阻抗谱 (EIS) 技术从未稀释的人血清中检测 TNF-α。该过程旨在分三个阶段从人血清中检测 TNF-α;(1) 使用磁性珠偶联的白蛋白和 IgG 抗体从血清中去除丰富的蛋白质背景,(2) 在背景去除后,使用磁性珠偶联的 TNF-α 抗体捕获 TNF-α,(3) 从磁性珠上洗脱捕获的 TNF-α,并用 EIS 技术进行测量,其中采用梳状结构的金微电极阵列 (CSGM) 来提高检测灵敏度。该系统能够达到 1 pg/ml(57 fM)的检测限 (LOD),并且在 1-1000 pg/ml 的动态范围内,随着 TNF-α 浓度的增加,电荷转移电阻呈线性关系。