Lee Sunmi, Lee Haeyeon, Yeon Song Yi, Chung Taek Dong
Program in Nano Science and Technology, Graduate School of Convergence Science and Technology, Seoul National University, Suwon-Si, Gyeonggi-do, 16229, Republic of Korea.
Department of Chemistry, Seoul National University, Seoul, 08826, Republic of Korea.
Biosens Bioelectron. 2023 Jun 1;229:115201. doi: 10.1016/j.bios.2023.115201. Epub 2023 Mar 9.
Two-electrode (2E) system of the interdigitated electrode array (IDA), which operates neither reference nor counter electrodes, has great potential to miniaturize multiplex immunoassay in a microfluidic chip for point-of-care testing. However, it is necessary to firmly immobilize the mediator layer on IDA made of indium tin oxide (ITO) which is chemically inert. It is important because the mediator determines the electrochemical potential in the 2E system, but the layer is easy to be detached during the washing processes of immunoassay. Here, we controlled the concentration of ethylenediamine (EDA) to generate a permeable and robust film to adhere to mediators on the ITO IDA chip. Electrooxidation of EDA yielded thin oligomeric ethyleneimine (OEI) film and it provided amine groups for immobilizing the mediator, poly(toluidine blue) (pTB), via common conjugation reaction. Despite repeated flows in the microchannel, which are essential for sensitive immunoassay, the pTB/OEI layer was hardly washed and still remained on the ITO IDA. Myoglobin was measured down to ∼ pg/mL level. Therefore, the ITO IDA modified with the OEI film in the 2E system constituted a stable platform that withstands washing steps for sensitive electrochemical detection in the miniaturized immunoassay.
叉指电极阵列(IDA)的双电极(2E)系统无需参比电极和对电极即可运行,在用于即时检测的微流控芯片中实现多重免疫分析的小型化方面具有巨大潜力。然而,有必要将介质层牢固地固定在由化学惰性的氧化铟锡(ITO)制成的IDA上。这一点很重要,因为介质决定了2E系统中的电化学电位,但在免疫分析的洗涤过程中,该层很容易脱落。在此,我们通过控制乙二胺(EDA)的浓度来生成一种可渗透且坚固的薄膜,以便将介质粘附在ITO IDA芯片上。EDA的电氧化产生了薄的低聚亚乙基亚胺(OEI)薄膜,它通过常见的共轭反应提供胺基来固定介质聚甲苯胺蓝(pTB)。尽管在微通道中反复流动(这对于灵敏的免疫分析至关重要),但pTB/OEI层几乎没有被洗掉,仍然保留在ITO IDA上。肌红蛋白的检测下限可达约pg/mL水平。因此,在2E系统中用OEI薄膜修饰的ITO IDA构成了一个稳定的平台,能够承受小型化免疫分析中灵敏电化学检测的洗涤步骤。