New Business Management Division, Management Planning H.Q., YOKOWO CO. LTD., 5-11, Takinogawa 7-Chome, Kita-ku, Tokyo 114-8515, Japan.
Department of Environmental Science and Education, Faculty of Home Economics, Tokyo Kasei University, 1-18-1 Kaga, Itabashi City, Tokyo 173-8602, Japan.
Sensors (Basel). 2020 Feb 4;20(3):836. doi: 10.3390/s20030836.
To harness the applicability of microribonucleic acid (miRNA) as a cancer biomarker, the detection sensitivity of serum miRNA needs to be improved. This study evaluated the detection sensitivity of miRNA hybridization using cyclic voltammograms (CVs) and microelectrode array chips modified with peptide nucleic acid (PNA) probes and 6-hydroxy-1-hexanethiol. We investigated the PNA probe modification pattern on array chips using fluorescently labeled cDNA. The pattern was not uniformly spread over the working electrode (WE) and had a one-dimensional swirl-like pattern. Accordingly, we established a new ion-channel sensor model wherein the WE is negatively biased through the conductive π-π stacks of the PNA/DNA duplexes. This paper discusses the mechanism underlying the voltage shift in the CV curves based on the electric double-layer capacitance. Additionally, the novel hybridization evaluation parameter is introduced. Compared to conventional evaluation using oxidation current changes, was more sensitive. Using and a new hybridization system for ultrasmall amounts of aqueous solutions (as low as 35 pL), 140 zeptomol label-free miRNA were detected without polymerase chain reaction (PCR) amplification at an adequate sensitivity. Herein, the differences in the target molar amount and molar concentration are elucidated from the viewpoint of hybridization sensitivity.
为了利用 microRNA(miRNA)作为癌症生物标志物的适用性,需要提高血清 miRNA 的检测灵敏度。本研究评估了使用循环伏安法(CV)和经肽核酸(PNA)探针和 6-羟基-1-己硫醇修饰的微电极阵列芯片进行 miRNA 杂交的检测灵敏度。我们使用荧光标记的 cDNA 研究了阵列芯片上 PNA 探针的修饰模式。该模式在工作电极(WE)上没有均匀扩散,具有一维漩涡状图案。因此,我们建立了一个新的离子通道传感器模型,其中 WE 通过 PNA/DNA 双链体的导电 π-π 堆叠被负偏置。本文根据双电层电容讨论了 CV 曲线中电压偏移的机制。此外,引入了新的杂交评估参数。与使用氧化电流变化的常规评估相比,更敏感。使用 和用于超少量水溶液(低至 35 pL)的新杂交系统,无需聚合酶链反应(PCR)扩增,在足够的灵敏度下检测到 140 zeptomol 无标记 miRNA。在此,从杂交灵敏度的角度阐明了目标摩尔量和摩尔浓度的差异。